VEGFA-VEGFR2 signaling (WP3888)
Homo sapiens
Angiogenesis, the formation of new blood vessels from pre-existing vasculature, is central to a number of physiological conditions, from embryogenesis to wound healing in adults and is a hallmark of pathological conditions such as tumorigenesis [1-3]. Angiogenesis is mediated by the coordinated action of a variety of growth factors, metabolites and cell adhesion molecules in endothelial cells [4-6]. Vascular endothelial growth factor (VEGF) is the principal angiogenic growth factor modulating neovascularization [7]. The biological effect of VEGF is mediated through specific VEGF receptors on endothelial cell surface. VEGFs (VEGF-A, VEGF-B, VEGF-C and VEGF-D) interact with VEGF receptors such as VEGFR1, VEGFR2 and VEGFR3. Among them, VEGFA/VEGFR2 signaling appears to mediate cellular responses involved in angiogenesis prominently. Further, VEGF/VEGFR1 signaling, though weak, converges to VEGFR2 signaling pathway. VEGFA binding to VEGFR2 at the surface of endothelial cells leads to dimerization and auto-phosphorylation of specific tyrosine residues in the cytoplasmic domain of VEGFR2. It leads to activation of multiple downstream signaling cascades and promotes endothelial cell proliferation, migration, and tube formation relevant to angiogenesis [8]. VEGFR2 dependent activation of PI3K-AKT-mTOR signaling regulates cell survival, cell proliferation, anti-apoptotic and cell permeability functions [9]. Another important pathway of VEGF mediated cell proliferation appears to be through PLCγ-mediated activation of PKC and downstream induction of the ERK and other PKC-dependent pathways [10]. Endothelial cell migration is induced by VEGFA/VEGFR2 signaling through activation of p38MAPK (actin polymerization) and FAK (focal adhesion turnover) which is particularly important in directed migration. Phosphosite specificity towards downstream signalling has also been documented. Phosphosite mapping documented seven phosphosites in VEGFR2 receptor: Y1054, Y1214, Y801, Y1175, Y951, Y1059 and Y996. Phosphorylation of Y1214 and Y1054 regulates signaling events involved in cell migration. Y801 phosphorylation regulates cell survival. Y1175 regulates both cell proliferation and migration. Y951 and Y1059 phosphorylation regulates cell survival, cell migration and cell proliferation. VEGFA/VEGFR2 signaling network compiles data available in the literature with respect to VEGFA signaling (especially VEGFA-165) through VEGFR2 in endothelial cells. The signaling events involving these proteins were derived from experimentally validated data involving multiple experimental techniques and approaches. Individual signaling events in VEGFR2 signaling networks leading to cell proliferation, migration and survival were identified and categorized into protein-protein interactions, enzyme-catalyzed events, activation/inhibition reactions, transport of protein across subcellular compartments, and gene regulation events. Signaling molecules involved in VEGFA/VEGFR2 signaling were categorized to enzymes, receptors and transcription factors and the contextual activation/deactivation of these molecules downstream to VEGFA/ VEGFR2 signaling, in modulating angiogenesis, is documented. VEGFA dependent angiogenesis pathway map depicts the integration of signaling pathways regulating cell survival, cell migration, cell proliferation, cellular interactions downstream of VEGFA/VEGFR2 signaling relevant to angiogenesis, regulation of VEGFR2, phosphosite specificity of VEGFR2 towards downstream signaling, post-translational modifications, molecular function-based information, cross-talks among proteins in the canonical signaling modules and the information on the compartmentalization of proteins. The map of VEGFA/VEGFR2 signaling network is interactive to help investigators to add new information as it becomes available in the future for analysis or representation. VEGFA dependent angiogenesis pathway map may please be cited as: 1. Abhinand, C. S., Raju, R., Soumya, S. J., Arya, P. S., and Sudhakaran, P. R. (2016). VEGF-A/VEGFR2 signaling network in endothelial cells relevant to angiogenesis. Journal of cell communication and signaling, 10(4), 347-354. 2. Sunitha, P., Raju, R., Sajil, C.K., Abhinand, C.S., Nair, A.S., Oommen, O.V., Sugunan, V.S., and Sudhakaran, P.R. (2019). Temporal VEGFA responsive genes in HUVECs: Gene signatures and potential ligands/receptors fine-tuning angiogenesis. Journal of Cell Communication and Signaling, 13, 561 - 571. References [1] Folkman J (1971). Tumor angiogenesis: therapeutic implications. N Engl J Med. 285:1182-1186. [2] Chatterjee S, Heukamp LC, Siobal M et al., 2013. Tumor VEGF: VEGFR2 autocrine feed-forward loop triggers angiogenesis in lung cancer. J Clin Invest. 123:1732-1740. [3] Shibuya M (2014). VEGF-VEGFR Signals in Health and Disease. BiomolTher (Seoul). 22:1-9. [4] Kumar VB, Binu S, Soumya SJ et al., 2014. Regulation of vascular endothelial growth factor by metabolic context of the cell. Glycoconj J. 31:427-434. [5] Kitazume S, Imamaki R, Ogawa K et al., 2014. Sweet role of platelet endothelial cell adhesion molecule in understanding angiogenesis. Glycobiology. 24:1260-1264. [6] Kunhiraman H, Edatt L, Thekkeveedu S et al., 2016. 2‐Deoxy Glucose Modulates Expression and Biological Activity of VEGF in a SIRT‐1 Dependent Mechanism. J Cell Biochem. [7] Lohela M, Bry M, Tammela T et al., 2009. VEGFs and receptors involved in angiogenesis versus lymphangiogenesis. Curr Opin Cell Biol. 21:154-165. [8] Koch S, Claesson-Welsh L, 2012. Signal transduction by vascular endothelial growth factor receptors. Cold Spring Harbor perspectives in medicine. 2(7):a006502. [9] Koch S, Tugues S, Li X et al., 2011. Signal transduction by vascular endothelial growth factor receptors. Biochem J.437:169-183. [10] Simons M, Gordon E, Claesson-Welsh L. 2016. Mechanisms and regulation of endothelial VEGF receptor signalling. Nat Rev Mol Cell Biol.
Authors
Dr.P.R.Sudhakaran , Kristina Hanspers , Alex Pico , Egon Willighagen , Denise Slenter , and Eric WeitzActivity
Discuss this pathway
Check for ongoing discussions or start your own.
Cited In
- A Nine-Strain Bacterial Consortium Improves Portal Hypertension and Insulin Signaling and Delays NAFLD Progression In Vivo (2022).
- Protrudin regulates FAK activation, endothelial cell migration and angiogenesis (2022).
- Multidimensional Analysis of CHMP Family Members in Hepatocellular Carcinoma (2022).
- Assessing the Contribution of Relative Macrophage Frequencies to Subcutaneous Adipose Tissue (2021).
- Protein Phosphatase 1 Regulatory Subunit 3B Genotype at rs4240624 Has a Major Effect on Gallbladder Bile Composition (2020).
- Temporal VEGFA responsive genes in HUVECs: Gene signatures and potential ligands/receptors fine-tuning angiogenesis (2019).
- Biological Pathways Leading From ANGPTL8 to Diabetes Mellitus–A Co-expression Network Based Analysis (2018).
- VEGF-A/VEGFR2 signaling network in endothelial cells relevant to angiogenesis (2016).
- GediNET for discovering gene associations across diseases using knowledge based machine learning approach (2022).
- Characterization of the interactome profiling of Mycoplasma fermentans DnaK in cancer cells reveals interference with key cellular pathways (2022).
- A Practical Strategy for Exploring the Pharmacological Mechanism of Luteolin Against COVID-19/Asthma Comorbidity: Findings of System Pharmacology and Bioinformatics Analysis (2024).
Are you planning to include this pathway in your next publication? See How to Cite and add a link here to your paper once it's online.
Organisms
Homo sapiensCommunities
CPTACAnnotations
Pathway Ontology
vascular endothelial growth factor signaling pathwayCell Type Ontology
endothelial cellLabel | Type | Compact URI | Comment |
---|---|---|---|
ABCF2 | GeneProduct | ncbigene:10061 | |
ACOT9 | GeneProduct | ncbigene:23597 | |
ACTG1 | GeneProduct | ncbigene:71 | |
AKAP2 | GeneProduct | ncbigene:11217 | |
ALB | GeneProduct | ncbigene:213 | |
ALDOA | GeneProduct | ncbigene:226 | |
ANXA1 | GeneProduct | ncbigene:301 | |
AP2A1 | GeneProduct | ncbigene:160 | |
AP2S1 | GeneProduct | ncbigene:1175 | |
ARF4 | GeneProduct | ncbigene:378 | |
ARMCX1 | GeneProduct | ncbigene:51309 | |
ARPC5L | GeneProduct | ncbigene:81873 | |
ASCC3 | GeneProduct | ncbigene:10973 | |
ATP6V0D1 | GeneProduct | ncbigene:9114 | |
CSRP2 | GeneProduct | ncbigene:1466 | |
CYR61 | GeneProduct | ncbigene:3491 | |
DECR1 | GeneProduct | ncbigene:1666 | |
DHX29 | GeneProduct | ncbigene:54505 | |
DHX36 | GeneProduct | ncbigene:170506 | |
DNAJA1 | GeneProduct | ncbigene:3301 | |
DNAJB4 | GeneProduct | ncbigene:11080 | |
DPM1 | GeneProduct | ncbigene:8813 | |
DSC1 | GeneProduct | ncbigene:1823 | |
EIF3D | GeneProduct | ncbigene:8664 | |
EIF3F | GeneProduct | ncbigene:8665 | |
EIF3H | GeneProduct | ncbigene:8667 | |
EIF4G1 | GeneProduct | ncbigene:1981 | |
EIF4G2 | GeneProduct | ncbigene:1982 | |
GRSF1 | GeneProduct | ncbigene:2926 | |
HBD | GeneProduct | ncbigene:3045 | |
HMGB1 | GeneProduct | ncbigene:3146 | |
HSP90AA1 | GeneProduct | ncbigene:3320 | |
HSP90AB2P | GeneProduct | ncbigene:391634 | |
HTRA1 | GeneProduct | ncbigene:5654 | |
HYOU1 | GeneProduct | ncbigene:10525 | |
IDH2 | GeneProduct | ncbigene:3418 | |
INPP5K | GeneProduct | ncbigene:51763 | |
IQGAP1 | GeneProduct | ncbigene:8826 | |
KANK1 | GeneProduct | ncbigene:23189 | |
KATNAL2 | GeneProduct | ncbigene:83473 | |
LDHA | GeneProduct | ncbigene:3939 | |
LMAN1 | GeneProduct | ncbigene:3998 | |
P4HB | GeneProduct | ncbigene:5034 | |
PABPC1 | GeneProduct | ncbigene:26986 | |
PBXIP1 | GeneProduct | ncbigene:57326 | |
PDE4DIP | GeneProduct | ncbigene:9659 | |
PDIA6 | GeneProduct | ncbigene:10130 | |
PFN1 | GeneProduct | ncbigene:5216 | |
PGD | GeneProduct | ncbigene:5226 | |
PGK1 | GeneProduct | ncbigene:5230 | |
PLOD3 | GeneProduct | ncbigene:8985 | |
PPM1G | GeneProduct | ncbigene:5496 | |
PPP1CA | GeneProduct | ncbigene:5499 | |
PPP2CA | GeneProduct | ncbigene:5515 | |
PRDX2 | GeneProduct | ncbigene:7001 | |
PRDX6 | GeneProduct | ncbigene:9588 | |
PRKRA | GeneProduct | ncbigene:8575 | |
RPL7 | GeneProduct | ncbigene:6129 | |
RPLP2 | GeneProduct | ncbigene:6181 | |
RPS11 | GeneProduct | ncbigene:6205 | |
SARS | GeneProduct | ncbigene:6301 | |
SET | GeneProduct | ncbigene:6418 | |
SH3BGRL3 | GeneProduct | ncbigene:83442 | |
SHROOM2 | GeneProduct | ncbigene:357 | |
SLC25A11 | GeneProduct | ncbigene:8402 | |
SND1 | GeneProduct | ncbigene:27044 | |
SPIRE1 | GeneProduct | ncbigene:56907 | |
SRP54 | GeneProduct | ncbigene:6729 | |
SRPK1 | GeneProduct | ncbigene:6732 | |
SSR3 | GeneProduct | ncbigene:6747 | |
SSR4 | GeneProduct | ncbigene:6748 | |
STIP1 | GeneProduct | ncbigene:10963 | |
ATP6V1E1 | GeneProduct | ncbigene:529 | |
BSG | GeneProduct | ncbigene:682 | |
CACNA2D1 | GeneProduct | ncbigene:781 | |
CALR | GeneProduct | ncbigene:811 | |
CALU | GeneProduct | ncbigene:813 | |
CAPZB | GeneProduct | ncbigene:832 | |
CCDC124 | GeneProduct | ncbigene:115098 | |
CCT7 | GeneProduct | ncbigene:10574 | |
CDC42BPB | GeneProduct | ncbigene:9578 | |
CGNL1 | GeneProduct | ncbigene:84952 | |
CLIC1 | GeneProduct | ncbigene:1192 | |
CNP | GeneProduct | ncbigene:1267 | |
COPG1 | GeneProduct | ncbigene:22820 | |
CRIP2 | GeneProduct | ncbigene:1397 | |
CSRP1 | GeneProduct | ncbigene:1465 | |
EPB41 | GeneProduct | ncbigene:2035 | |
EPRS | GeneProduct | ncbigene:2058 | |
EWSR1 | GeneProduct | ncbigene:2130 | |
FAM120A | GeneProduct | ncbigene:23196 | |
FARSB | GeneProduct | ncbigene:10056 | |
FGD5 | GeneProduct | ncbigene:152273 | |
FHOD1 | GeneProduct | ncbigene:29109 | |
FLII | GeneProduct | ncbigene:2314 | |
FMNL3 | GeneProduct | ncbigene:91010 | |
FN1 | GeneProduct | ncbigene:2335 | |
FSCN1 | GeneProduct | ncbigene:6624 | |
FXR2 | GeneProduct | ncbigene:9513 | |
GAPDH | GeneProduct | ncbigene:2597 | |
GIGYF2 | GeneProduct | ncbigene:26058 | |
GLUD1 | GeneProduct | ncbigene:2746 | |
LRRC59 | GeneProduct | ncbigene:55379 | |
LRRFIP2 | GeneProduct | ncbigene:9209 | |
LUC7L | GeneProduct | ncbigene:55692 | |
MICAL2 | GeneProduct | ncbigene:9645 | |
MOV10 | GeneProduct | ncbigene:4343 | |
MYH11 | GeneProduct | ncbigene:4629 | |
MYO1C | GeneProduct | ncbigene:4641 | |
MYO6 | GeneProduct | ncbigene:4646 | |
NAP1L1 | GeneProduct | ncbigene:4673 | |
NAPA | GeneProduct | ncbigene:8775 | |
NCL | GeneProduct | ncbigene:4691 | |
NEXN | GeneProduct | ncbigene:91624 | |
NUMB | GeneProduct | ncbigene:8650 | |
OCRL | GeneProduct | ncbigene:4952 | |
P4HA2 | GeneProduct | ncbigene:8974 | |
PRRC2C | GeneProduct | ncbigene:23215 | |
PSMD11 | GeneProduct | ncbigene:5717 | |
PSMD4 | GeneProduct | ncbigene:5710 | |
PTMA | GeneProduct | ncbigene:5757 | |
PTPN14 | GeneProduct | ncbigene:5784 | |
QKI | GeneProduct | ncbigene:9444 | |
RBM39 | GeneProduct | ncbigene:9584 | |
RCN1 | GeneProduct | ncbigene:5954 | |
RPL10A | GeneProduct | ncbigene:4736 | |
RPL13A | GeneProduct | ncbigene:23521 | |
RPL18A | GeneProduct | ncbigene:6142 | |
RPL26 | GeneProduct | ncbigene:6154 | |
RPL27 | GeneProduct | ncbigene:6155 | |
RPL39P5 | GeneProduct | ncbigene:553117 | |
RPL5 | GeneProduct | ncbigene:6125 | |
SYNJ1 | GeneProduct | ncbigene:8867 | |
TAOK2 | GeneProduct | ncbigene:9344 | |
TBCA | GeneProduct | ncbigene:6902 | |
TCEB1 | GeneProduct | ncbigene:6921 | |
TFAM | GeneProduct | ncbigene:7019 | |
TFCP2 | GeneProduct | ncbigene:7024 | |
TKT | GeneProduct | ncbigene:7086 | |
TMOD1 | GeneProduct | ncbigene:7111 | |
TMOD3 | GeneProduct | ncbigene:29766 | |
TMSB10 | GeneProduct | ncbigene:9168 | |
TMSB4X | GeneProduct | ncbigene:7114 | |
TPM3 | GeneProduct | ncbigene:7170 | |
TPP1 | GeneProduct | ncbigene:1200 | |
TRIP4 | GeneProduct | ncbigene:9325 | |
TUBA1C | GeneProduct | ncbigene:84790 | |
TUBB8 | GeneProduct | ncbigene:347688 | |
TXNDC5 | GeneProduct | ncbigene:81567 | |
UBAP2L | GeneProduct | ncbigene:9898 | |
USP10 | GeneProduct | ncbigene:9100 | |
VPS39 | GeneProduct | ncbigene:23339 | |
YWHAE | GeneProduct | ncbigene:7531 | |
ZC3H15 | GeneProduct | ncbigene:55854 | |
STAT3 | Protein | ncbigene:6774 | |
ROCK2 | Protein | ncbigene:9475 | |
PRKD2 | Protein | ncbigene:25865 | |
MAPK3 | Protein | ncbigene:5595 | |
MAPK1 | Protein | ncbigene:5594 | |
MAP2K3 | Protein | ncbigene:5606 | |
MAP2K6 | Protein | ncbigene:5608 | |
MAPK9 | Protein | ncbigene:5601 | |
MAPK8 | Protein | ncbigene:5599 | |
PRKCZ | Protein | ncbigene:5590 | |
PIK3R2 | Protein | ncbigene:5296 | |
ACACB | Protein | ncbigene:32 | |
NCF2 | Protein | ncbigene:4688 | |
MAPK12 | Protein | ncbigene:6300 | |
RAP1B | Protein | ncbigene:5908 | |
VEGFR2 | Protein | ncbigene:3791 | |
FADD | Protein | ncbigene:8772 | |
TCEB3 | Protein | ncbigene:6924 | |
FAF1 | Protein | ncbigene:11124 | |
FAS | Protein | ncbigene:355 | |
BIN1 | Protein | ncbigene:274 | |
BMX | Protein | ncbigene:660 | |
HDAC1 | Protein | ncbigene:3065 | |
TNFRSF10C | Protein | ncbigene:8794 | |
HSPA1A | Protein | ncbigene:3303 | |
SMARCA2 | Protein | ncbigene:6595 | |
DOK1 | Protein | ncbigene:1796 | |
GAB1 | Protein | ncbigene:2549 | |
VEGFA | Protein | ncbigene:7422 | |
MAPK14 | Protein | ncbigene:1432 | |
NCK1 | Protein | ncbigene:4690 | |
FYN | Protein | ncbigene:2534 | |
PAK2 | Protein | ncbigene:5062 | |
STAT1 | Protein | ncbigene:6772 | |
STAT6 | Protein | ncbigene:6778 | |
FRS2 | Protein | ncbigene:10818 | |
CRK | Protein | ncbigene:1398 | |
PRKCI | Protein | ncbigene:5584 | |
SRC | Protein | ncbigene:6714 | |
RAPGEF1 | Protein | ncbigene:2889 | |
RAP1A | Protein | ncbigene:5906 | |
ITGAV | Protein | ncbigene:3685 | |
ITGB3 | Protein | ncbigene:3690 | |
BCAR1 | Protein | ncbigene:9564 | |
PLCG1 | Protein | ncbigene:5335 | |
SHC1 | Protein | ncbigene:6464 | |
SHC2 | Protein | ncbigene:25759 | |
PTK2 | Protein | ncbigene:5747 | |
IQGAP1 | Protein | ncbigene:8826 | |
RAC1 | Protein | ncbigene:5879 | |
ITGB5 | Protein | ncbigene:3693 | |
ITGB1 | Protein | ncbigene:3688 | |
SH2D2A | Protein | ncbigene:9047 | |
TPCN2 | Protein | ncbigene:219931 | |
MAPKAPK2 | Protein | ncbigene:9261 | |
PLAU | Protein | ncbigene:5328 | |
CAPN2 | Protein | ncbigene:824 | |
MYL2 | Protein | ncbigene:4633 | |
ROCK1 | Protein | ncbigene:6093 | |
RHOA | Protein | ncbigene:387 | |
RHOC | Protein | ncbigene:389 | |
MAP2K1 | Protein | ncbigene:5604 | |
CBL | Protein | ncbigene:867 | |
ITPR1 | Protein | ncbigene:3748 | |
PRKCB | Protein | ncbigene:5579 | |
PRKCA | Protein | ncbigene:5578 | |
RAF1 | Protein | ncbigene:5894 | |
SPHK1 | Protein | ncbigene:55872 | |
HRAS | Protein | ncbigene:3265 | |
PRKD1 | Protein | ncbigene:5587 | |
HDAC5 | Protein | ncbigene:10014 | |
PRKCD | Protein | ncbigene:5580 | |
PRKCE | Protein | ncbigene:5581 | |
PLA2G4A | Protein | ncbigene:5321 | |
HSPB1 | Protein | ncbigene:3315 | |
NRP1 | Protein | ncbigene:8821 | |
CAV1 | Protein | ncbigene:857 | |
CDH5 | Protein | ncbigene:1003 | |
PTPN11 | Protein | ncbigene:5781 | |
CSK | Protein | ncbigene:1445 | |
PTK2B | Protein | ncbigene:2185 | |
HSP90AA1 | Protein | ncbigene:3320 | |
MLLT4 | Protein | ncbigene:4301 | |
FHL2 | Protein | ncbigene:2274 | |
PLCB3 | Protein | ncbigene:5331 | |
CDC42 | Protein | ncbigene:998 | |
WASF1 | Protein | ncbigene:8936 | |
NCF1 | Protein | ncbigene:653361 | |
PAK1 | Protein | ncbigene:5058 | |
PTPN9 | Protein | ncbigene:5780 | |
PTPRZ1 | Protein | ncbigene:5803 | |
NCL | Protein | ncbigene:4691 | |
MYH9 | Protein | ncbigene:4627 | |
AKT1 | Protein | ncbigene:207 | |
FOXO1 | Protein | ncbigene:2308 | |
RELA | Protein | ncbigene:5970 | |
NFKBIA | Protein | ncbigene:4792 | |
PLA2G5 | Protein | ncbigene:5322 | |
RPS6KA5 | Protein | ncbigene:9252 | |
PIK3R1 | Protein | ncbigene:5295 | |
NOS3 | Protein | ncbigene:4846 | |
LIMK1 | Protein | ncbigene:3984 | |
CFL1 | Protein | ncbigene:1072 | |
VAV2 | Protein | ncbigene:7410 | |
FLNB | Protein | ncbigene:2317 | |
PFN1 | Protein | ncbigene:5216 | |
ATF2 | Protein | ncbigene:1386 | |
GRB2 | Protein | ncbigene:2885 | |
PXN | Protein | ncbigene:5829 | |
GJA1 | Protein | ncbigene:2697 | |
PTPRJ | Protein | ncbigene:5795 | |
SHB | Protein | ncbigene:6461 | |
RPS6KB1 | Protein | ncbigene:6198 | |
TXNIP | Protein | ncbigene:10628 | |
ACP1 | Protein | ncbigene:52 | |
TXN | Protein | ncbigene:7295 | |
PTPN6 | Protein | ncbigene:5777 | |
GRB10 | Protein | ncbigene:2887 | |
PRKAA1 | Protein | ncbigene:5562 | |
CREB1 | Protein | ncbigene:1385 | |
CAMKK2 | Protein | ncbigene:10645 | |
ACACA | Protein | ncbigene:31 | |
PRKAA2 | Protein | ncbigene:5563 | |
ARHGEF15 | Protein | ncbigene:22899 | |
RHOJ | Protein | ncbigene:57381 | |
PDPK1 | Protein | ncbigene:5170 | |
R1CTOR | Protein | ncbigene:253260 | |
MLST8 | Protein | ncbigene:64223 | |
MAPKAP1 | Protein | ncbigene:79109 | |
MTOR | Protein | ncbigene:2475 | |
RAPTOR | Protein | ncbigene:253260 | |
NRDG1 | Protein | ncbigene:10397 | |
GSK3B | Protein | ncbigene:2932 | |
AKT1S1 | Protein | ncbigene:84335 | |
RPS6 | Protein | ncbigene:6194 | |
EIF2AK3 | Protein | ncbigene:9451 | |
ERN1 | Protein | ncbigene:2081 | |
ATF6 | Protein | ncbigene:22926 | |
EIF2A | Protein | ncbigene:83939 | |
ATF4 | Protein | ncbigene:468 | |
DNAJB9 | Protein | ncbigene:4189 | |
HERPUD1 | Protein | ncbigene:9709 | |
EZR | Protein | ncbigene:7430 | |
TRPC1 | Protein | ncbigene:7220 | |
KL | Protein | ncbigene:9365 | |
PIK3CA | Protein | ncbigene:5290 | |
RAB5A | Protein | ncbigene:5868 | |
CTNND1 | Protein | ncbigene:1500 | |
CTNNB1 | Protein | ncbigene:1499 | |
CTNNA1 | Protein | ncbigene:1495 | |
MAP2K2 | Protein | ncbigene:5605 | |
FBXW11 | Protein | ncbigene:23291 | |
EEA1 | Protein | ncbigene:8411 | |
SLC8A1 | Protein | ncbigene:6546 | |
HGS | Protein | ncbigene:9146 | |
STAM | Protein | ncbigene:8027 | |
GIPC1 | Protein | ncbigene:10755 | |
MYO6 | Protein | ncbigene:4646 | |
PTPN1 | Protein | ncbigene:5770 | |
RAB11 | Protein | ncbigene:8766 | |
ARRB2 | Protein | ncbigene:409 | |
VCL | Protein | ncbigene:7414 | |
CLTC | Protein | ncbigene:1213 | |
MAPKAPK5 | Protein | ncbigene:8550 | |
NRP2 | Protein | ncbigene:8828 | |
MAP3K5 | Protein | ncbigene:4217 | |
MAP2K7 | Protein | ncbigene:5609 | |
MAP2K4 | Protein | ncbigene:6416 | |
JUN | Protein | ncbigene:3725 | |
ARF6 | Protein | ncbigene:382 | |
ANXA1 | Protein | ncbigene:301 | |
NFATC2 | Protein | ncbigene:4773 | |
NFATC1 | Protein | ncbigene:4772 | |
PTGS2 | Protein | ncbigene:5743 | |
RND1 | Protein | ncbigene:27289 | |
EGR1 | Protein | ncbigene:1958 | |
SRF | Protein | ncbigene:6722 | |
NR4A2 | Protein | ncbigene:4929 | |
NR4A3 | Protein | ncbigene:8013 | |
PPP3CA | Protein | ncbigene:5530 | |
JAG1 | Protein | ncbigene:182 | |
DKK1 | Protein | ncbigene:22943 | |
CCL2 | Protein | ncbigene:6347 | |
CXCL8 | Protein | ncbigene:3576 | |
AMOT | Protein | ncbigene:154796 | |
BMP10 | Protein | ncbigene:27302 | |
TEAD4 | Protein | ncbigene:7004 | |
NFKB1 | Protein | ncbigene:4790 | |
ICAM1 | Protein | ncbigene:3383 | |
SELE | Protein | ncbigene:6401 | |
FOXO4 | Protein | ncbigene:4303 | |
FOXO3 | Protein | ncbigene:2309 | |
RAB4A | Protein | ncbigene:5867 | |
EPS15 | Protein | ncbigene:2060 | |
EPN1 | Protein | ncbigene:29924 | |
OCLN | Protein | ncbigene:100506658 | |
ITCH | Protein | ncbigene:83737 | |
HDAC7 | Protein | ncbigene:51564 | |
YWHAE | Protein | ncbigene:7531 | |
HDAC9 | Protein | ncbigene:9734 | |
HDAC4 | Protein | ncbigene:9759 | |
MEF2C | Protein | ncbigene:4208 | |
CCND1 | Protein | ncbigene:595 | |
RCAN2 | Protein | ncbigene:10231 | |
MMP10 | Protein | ncbigene:4319 | |
MMP14 | Protein | ncbigene:4323 | |
MKNK1 | Protein | ncbigene:8569 | |
EIF4E | Protein | ncbigene:1977 | |
ELK1 | Protein | ncbigene:2002 | |
PLAUR | Protein | ncbigene:5329 | |
MMP2 | Protein | ncbigene:4313 | |
F3 | Protein | ncbigene:2152 | |
NR4A1 | Protein | ncbigene:3164 | |
VCAM1 | Protein | ncbigene:5328 | |
BCL2L1 | Protein | ncbigene:598 | |
CYP2C8 | Protein | ncbigene:1558 | |
SOD2 | Protein | ncbigene:6648 | |
ADAMTS1 | Protein | ncbigene:9510 | |
ACKR3 | Protein | ncbigene:57007 | |
EGR3 | Protein | ncbigene:1960 | |
HBEGF | Protein | ncbigene:1839 | |
RCAN1 | Protein | ncbigene:1827 | |
CDKN1B | Protein | ncbigene:8013 | |
NUR4A1 | Protein | ncbigene:3164 | |
BCL2 | Protein | ncbigene:596 | |
ERG | Protein | ncbigene:2078 | |
NOTCH4 | Protein | ncbigene:4855 | |
ETS1 | Protein | ncbigene:2113 | |
PRKG1 | Protein | ncbigene:5592 | |
FGA | Protein | ncbigene:2243 | |
MMRN2 | Protein | ncbigene:79812 | |
TNXB | Protein | ncbigene:7148 | |
IGFBP7 | Protein | ncbigene:3490 | |
GPC1 | Protein | ncbigene:2817 | |
CTGF | Protein | ncbigene:1490 | |
PGF | Protein | ncbigene:5228 | |
FGB | Protein | ncbigene:2244 | |
FGG | Protein | ncbigene:2266 | |
FLT1 | Protein | ncbigene:2321 | |
RACK1 | Protein | ncbigene:10399 | |
BIRC5 | Protein | ncbigene:332 | |
MDM2 | Protein | ncbigene:4193 | |
ADAM9 | Protein | ncbigene:8754 | |
ADAM10 | Protein | ncbigene:102 | |
S1PR1 | Protein | ncbigene:1901 | |
AFDN | Protein | ncbigene:4301 | |
SCUBE2 | Protein | ncbigene:57758 | |
ENG | Protein | ncbigene:2022 | |
FGD5 | Protein | ncbigene:152273 | |
LMO2 | Protein | ncbigene:405 | |
TAL1 | Protein | ncbigene:6886 | |
GATA2 | Protein | ncbigene:2624 | |
LDB2 | Protein | ncbigene:9079 | |
DLL4 | Protein | ncbigene:54567 | |
GPX1 | Protein | ncbigene:2876 | |
CYCS | Protein | ncbigene:54205 | |
CHAC1 | Protein | ncbigene:79094 | |
C15ORF39 | Protein | ncbigene:56905 | |
RAB37 | Protein | ncbigene:326624 | |
ADRB2 | Protein | ncbigene:154 | |
TRAF3IP2 | Protein | ncbigene:10758 | |
DUSP5 | Protein | ncbigene:1847 | |
EPHA2 | Protein | ncbigene:1969 | |
FJX1 | Protein | ncbigene:24147 | |
TMEM170A | Protein | ncbigene:124491 | |
SDF2L1 | Protein | ncbigene:23753 | |
SLC2A14 | Protein | ncbigene:144195 | |
IER5 | Protein | ncbigene:51278 | |
SLC39A14 | Protein | ncbigene:21356 | |
ZNF555 | Protein | ncbigene:148254 | |
HLX | Protein | ncbigene:3142 | |
NRARP | Protein | ncbigene:441478 | |
SLC25A25 | Protein | ncbigene:114789 | |
CCRL2 | Protein | ncbigene:9034 | |
PNP | Protein | ncbigene:4860 | |
APOLD1 | Protein | ncbigene:81575 | |
NDRG1 | Protein | ncbigene:10397 | |
FUT1 | Protein | ncbigene:2523 | |
SIAH2 | Protein | ncbigene:6478 | |
CASC10 | Protein | ncbigene:399726 | |
TRPC3 | Protein | ncbigene:7222 | |
SLC7A1 | Protein | ncbigene:6541 | |
BRD4 | Protein | ncbigene:23476 | |
LARP7 | Protein | ncbigene:51574 | |
CREBBP | Protein | ncbigene:1387 | |
BMP2 | Protein | ncbigene:650 | |
SEMA6D | Protein | ncbigene:80031 | |
ADAMTS9 | Protein | ncbigene:56999 | |
IGFBP3 | Protein | ncbigene:3486 | |
CYBB | Protein | ncbigene:1536 | |
NOX4 | Protein | ncbigene:50507 | |
EPHB2 | Protein | ncbigene:2048 | |
SDCBP | Protein | ncbigene:6386 | |
ABL1 | Protein | ncbigene:25 | |
TNFRSF25 | Protein | ncbigene:8718 |
References
- Nonachlasine--a new drug for treatment of ischemic heart disease. Kaverina NV, Markova GA, Chichkanov GG, Chumburidze VB, Basaeva AI. Kardiologiia. 1975 Jul;15(7):43–8. PubMed Europe PMC Scholia
- Interaction of the Flt-1 tyrosine kinase receptor with the p85 subunit of phosphatidylinositol 3-kinase. Mapping of a novel site involved in binding. Cunningham SA, Waxham MN, Arrate PM, Brock TA. J Biol Chem. 1995 Sep 1;270(35):20254–7. PubMed Europe PMC Scholia
- Vascular endothelial cell growth factor promotes tyrosine phosphorylation of mediators of signal transduction that contain SH2 domains. Association with endothelial cell proliferation. Guo D, Jia Q, Song HY, Warren RS, Donner DB. J Biol Chem. 1995 Mar 24;270(12):6729–33. PubMed Europe PMC Scholia
- Nitric oxide mediates mitogenic effect of VEGF on coronary venular endothelium. Morbidelli L, Chang CH, Douglas JG, Granger HJ, Ledda F, Ziche M. Am J Physiol. 1996 Jan;270(1 Pt 2):H411-5. PubMed Europe PMC Scholia
- Nitric oxide synthase lies downstream from vascular endothelial growth factor-induced but not basic fibroblast growth factor-induced angiogenesis. Ziche M, Morbidelli L, Choudhuri R, Zhang HT, Donnini S, Granger HJ, et al. J Clin Invest. 1997 Jun 1;99(11):2625–34. PubMed Europe PMC Scholia
- Vascular endothelial growth factor stimulates tyrosine phosphorylation and recruitment to new focal adhesions of focal adhesion kinase and paxillin in endothelial cells. Abedi H, Zachary I. J Biol Chem. 1997 Jun 13;272(24):15442–51. PubMed Europe PMC Scholia
- The phosphorylated 1169-tyrosine containing region of flt-1 kinase (VEGFR-1) is a major binding site for PLCgamma. Sawano A, Takahashi T, Yamaguchi S, Shibuya M. Biochem Biophys Res Commun. 1997 Sep 18;238(2):487–91. PubMed Europe PMC Scholia
- Crystal structure at 1.7 A resolution of VEGF in complex with domain 2 of the Flt-1 receptor. Wiesmann C, Fuh G, Christinger HW, Eigenbrot C, Wells JA, de Vos AM. Cell. 1997 Nov 28;91(5):695–704. PubMed Europe PMC Scholia
- p38 MAP kinase activation by vascular endothelial growth factor mediates actin reorganization and cell migration in human endothelial cells. Rousseau S, Houle F, Landry J, Huot J. Oncogene. 1997 Oct;15(18):2169–77. PubMed Europe PMC Scholia
- Interactions of FLT-1 and KDR with phospholipase C gamma: identification of the phosphotyrosine binding sites. Cunningham SA, Arrate MP, Brock TA, Waxham MN. Biochem Biophys Res Commun. 1997 Nov 26;240(3):635–9. PubMed Europe PMC Scholia
- Vascular endothelial growth factor stimulates prostacyclin production and activation of cytosolic phospholipase A2 in endothelial cells via p42/p44 mitogen-activated protein kinase. Wheeler-Jones C, Abu-Ghazaleh R, Cospedal R, Houliston RA, Martin J, Zachary I. FEBS Lett. 1997 Dec 22;420(1):28–32. PubMed Europe PMC Scholia
- Nitric oxide is an upstream signal of vascular endothelial growth factor-induced extracellular signal-regulated kinase1/2 activation in postcapillary endothelium. Parenti A, Morbidelli L, Cui XL, Douglas JG, Hood JD, Granger HJ, et al. J Biol Chem. 1998 Feb 13;273(7):4220–6. PubMed Europe PMC Scholia
- Dynamic activation of endothelial nitric oxide synthase by Hsp90. García-Cardeña G, Fan R, Shah V, Sorrentino R, Cirino G, Papapetropoulos A, et al. Nature. 1998 Apr 23;392(6678):821–4. PubMed Europe PMC Scholia
- Identification of vascular endothelial growth factor receptor-1 tyrosine phosphorylation sites and binding of SH2 domain-containing molecules. Ito N, Wernstedt C, Engström U, Claesson-Welsh L. J Biol Chem. 1998 Sep 4;273(36):23410–8. PubMed Europe PMC Scholia
- Extracellular signal-regulated protein kinase/Jun kinase cross-talk underlies vascular endothelial cell growth factor-induced endothelial cell proliferation. Pedram A, Razandi M, Levin ER. J Biol Chem. 1998 Oct 9;273(41):26722–8. PubMed Europe PMC Scholia
- Vascular endothelial growth factor regulates endothelial cell survival through the phosphatidylinositol 3’-kinase/Akt signal transduction pathway. Requirement for Flk-1/KDR activation. Gerber HP, McMurtrey A, Kowalski J, Yan M, Keyt BA, Dixit V, et al. J Biol Chem. 1998 Nov 13;273(46):30336–43. PubMed Europe PMC Scholia
- Vascular endothelial growth factor activates nuclear factor of activated T cells in human endothelial cells: a role for tissue factor gene expression. Armesilla AL, Lorenzo E, Gómez del Arco P, Martínez-Martínez S, Alfranca A, Redondo JM. Mol Cell Biol. 1999 Mar;19(3):2032–43. PubMed Europe PMC Scholia
- MAP kinases, phosphatidylinositol 3-kinase, and p70 S6 kinase mediate the mitogenic response of human endothelial cells to vascular endothelial growth factor. Yu Y, Sato JD. J Cell Physiol. 1999 Feb;178(2):235–46. PubMed Europe PMC Scholia
- Activation of the mitogen-activated protein kinase cascade is necessary but not sufficient for basic fibroblast growth factor- and epidermal growth factor-stimulated expression of endothelial nitric oxide synthase in ovine fetoplacental artery endothelial cells. Zheng J, Bird IM, Melsaether AN, Magness RR. Endocrinology. 1999 Mar;140(3):1399–407. PubMed Europe PMC Scholia
- Autophosphorylation of KDR in the kinase domain is required for maximal VEGF-stimulated kinase activity and receptor internalization. Dougher M, Terman BI. Oncogene. 1999 Feb 25;18(8):1619–27. PubMed Europe PMC Scholia
- Glypican-1 is a VEGF165 binding proteoglycan that acts as an extracellular chaperone for VEGF165. Gengrinovitch S, Berman B, David G, Witte L, Neufeld G, Ron D. J Biol Chem. 1999 Apr 16;274(16):10816–22. PubMed Europe PMC Scholia
- VEGF activates protein kinase C-dependent, but Ras-independent Raf-MEK-MAP kinase pathway for DNA synthesis in primary endothelial cells. Takahashi T, Ueno H, Shibuya M. Oncogene. 1999 Apr 1;18(13):2221–30. PubMed Europe PMC Scholia
- Vascular endothelial growth factor activates nuclear factor-kappaB and induces monocyte chemoattractant protein-1 in bovine retinal endothelial cells. Marumo T, Schini-Kerth VB, Busse R. Diabetes. 1999 May;48(5):1131–7. PubMed Europe PMC Scholia
- Angiogenesis activators and inhibitors differentially regulate caveolin-1 expression and caveolae formation in vascular endothelial cells. Angiogenesis inhibitors block vascular endothelial growth factor-induced down-regulation of caveolin-1. Liu J, Razani B, Tang S, Terman BI, Ware JA, Lisanti MP. J Biol Chem. 1999 May 28;274(22):15781–5. PubMed Europe PMC Scholia
- Akt mediates cytoprotection of endothelial cells by vascular endothelial growth factor in an anchorage-dependent manner. Fujio Y, Walsh K. J Biol Chem. 1999 Jun 4;274(23):16349–54. PubMed Europe PMC Scholia
- Tyrosine phosphorylation of p62dok by p210bcr-abl inhibits RasGAP activity. Kashige N, Carpino N, Kobayashi R. Proc Natl Acad Sci U S A. 2000 Feb 29;97(5):2093–8. PubMed Europe PMC Scholia
- Vascular endothelial growth factor activates STAT proteins in aortic endothelial cells. Bartoli M, Gu X, Tsai NT, Venema RC, Brooks SE, Marrero MB, et al. J Biol Chem. 2000 Oct 27;275(43):33189–92. PubMed Europe PMC Scholia
- Vascular endothelial growth factor binds to fibrinogen and fibrin and stimulates endothelial cell proliferation. Sahni A, Francis CW. Blood. 2000 Dec 1;96(12):3772–8. PubMed Europe PMC Scholia
- Vascular endothelial growth factor expression of intercellular adhesion molecule 1 (ICAM-1), vascular cell adhesion molecule 1 (VCAM-1), and E-selectin through nuclear factor-kappa B activation in endothelial cells. Kim I, Moon SO, Kim SH, Kim HJ, Koh YS, Koh GY. J Biol Chem. 2001 Mar 9;276(10):7614–20. PubMed Europe PMC Scholia
- Extracellular matrix tenascin-X in combination with vascular endothelial growth factor B enhances endothelial cell proliferation. Ikuta T, Ariga H, Matsumoto K. Genes Cells. 2000 Nov;5(11):913–27. PubMed Europe PMC Scholia
- VEGF-induced activation of phosphoinositide 3-kinase is dependent on focal adhesion kinase. Qi JH, Claesson-Welsh L. Exp Cell Res. 2001 Feb 1;263(1):173–82. PubMed Europe PMC Scholia
- Vascular endothelial growth factor-induced prostacyclin production is mediated by a protein kinase C (PKC)-dependent activation of extracellular signal-regulated protein kinases 1 and 2 involving PKC-delta and by mobilization of intracellular Ca2+. Gliki G, Abu-Ghazaleh R, Jezequel S, Wheeler-Jones C, Zachary I. Biochem J. 2001 Feb 1;353(Pt 3):503–12. PubMed Europe PMC Scholia
- VEGF transiently disrupts gap junctional communication in endothelial cells. Suarez S, Ballmer-Hofer K. J Cell Sci. 2001 Mar;114(Pt 6):1229–35. PubMed Europe PMC Scholia
- Identification of tyrosine residues in vascular endothelial growth factor receptor-2/FLK-1 involved in activation of phosphatidylinositol 3-kinase and cell proliferation. Dayanir V, Meyer RD, Lashkari K, Rahimi N. J Biol Chem. 2001 May 25;276(21):17686–92. PubMed Europe PMC Scholia
- NCK and PAK participate in the signaling pathway by which vascular endothelial growth factor stimulates the assembly of focal adhesions. Stoletov KV, Ratcliffe KE, Spring SC, Terman BI. J Biol Chem. 2001 Jun 22;276(25):22748–55. PubMed Europe PMC Scholia
- Vascular endothelial growth factor effects on nuclear factor-kappaB activation in hematopoietic progenitor cells. Dikov MM, Oyama T, Cheng P, Takahashi T, Takahashi K, Sepetavec T, et al. Cancer Res. 2001 Mar 1;61(5):2015–21. PubMed Europe PMC Scholia
- Vascular endothelial cell growth factor activates CRE-binding protein by signaling through the KDR receptor tyrosine kinase. Mayo LD, Kessler KM, Pincheira R, Warren RS, Donner DB. J Biol Chem. 2001 Jul 6;276(27):25184–9. PubMed Europe PMC Scholia
- A single autophosphorylation site on KDR/Flk-1 is essential for VEGF-A-dependent activation of PLC-gamma and DNA synthesis in vascular endothelial cells. Takahashi T, Yamaguchi S, Chida K, Shibuya M. EMBO J. 2001 Jun 1;20(11):2768–78. PubMed Europe PMC Scholia
- The adapter protein, Grb10, is a positive regulator of vascular endothelial growth factor signaling. Giorgetti-Peraldi S, Murdaca J, Mas JC, Van Obberghen E. Oncogene. 2001 Jul 5;20(30):3959–68. PubMed Europe PMC Scholia
- Direct identification of a major autophosphorylation site on vascular endothelial growth factor receptor Flt-1 that mediates phosphatidylinositol 3’-kinase binding. Yu Y, Hulmes JD, Herley MT, Whitney RG, Crabb JW, Sato JD. Biochem J. 2001 Sep 1;358(Pt 2):465–72. PubMed Europe PMC Scholia
- Rho family GTPases regulate VEGF-stimulated endothelial cell motility. Soga N, Namba N, McAllister S, Cornelius L, Teitelbaum SL, Dowdy SF, et al. Exp Cell Res. 2001 Sep 10;269(1):73–87. PubMed Europe PMC Scholia
- Vascular endothelial growth factor induction of the angiogenic phenotype requires Ras activation. Meadows KN, Bryant P, Pumiglia K. J Biol Chem. 2001 Dec 28;276(52):49289–98. PubMed Europe PMC Scholia
- Src mediates stimulation by vascular endothelial growth factor of the phosphorylation of focal adhesion kinase at tyrosine 861, and migration and anti-apoptosis in endothelial cells. Abu-Ghazaleh R, Kabir J, Jia H, Lobo M, Zachary I. Biochem J. 2001 Nov 15;360(Pt 1):255–64. PubMed Europe PMC Scholia
- Regulation of VEGF-induced endothelial cell PAF synthesis: role of p42/44 MAPK, p38 MAPK and PI3K pathways. Bernatchez PN, Allen BG, Gélinas DS, Guillemette G, Sirois MG. Br J Pharmacol. 2001 Nov;134(6):1253–62. PubMed Europe PMC Scholia
- Reactive oxygen species as downstream mediators of angiogenic signaling by vascular endothelial growth factor receptor-2/KDR. Colavitti R, Pani G, Bedogni B, Anzevino R, Borrello S, Waltenberger J, et al. J Biol Chem. 2002 Feb 1;277(5):3101–8. PubMed Europe PMC Scholia
- Connective tissue growth factor binds vascular endothelial growth factor (VEGF) and inhibits VEGF-induced angiogenesis. Inoki I, Shiomi T, Hashimoto G, Enomoto H, Nakamura H, Makino K ichi, et al. FASEB J. 2002 Feb;16(2):219–21. PubMed Europe PMC Scholia
- Src-mediated coupling of focal adhesion kinase to integrin alpha(v)beta5 in vascular endothelial growth factor signaling. Eliceiri BP, Puente XS, Hood JD, Stupack DG, Schlaepfer DD, Huang XZ, et al. J Cell Biol. 2002 Apr 1;157(1):149–60. PubMed Europe PMC Scholia
- Placenta growth factor-1 antagonizes VEGF-induced angiogenesis and tumor growth by the formation of functionally inactive PlGF-1/VEGF heterodimers. Eriksson A, Cao R, Pawliuk R, Berg SM, Tsang M, Zhou D, et al. Cancer Cell. 2002 Feb;1(1):99–108. PubMed Europe PMC Scholia
- Fibroblast growth factor receptor substrate 2 participates in vascular endothelial growth factor-induced signaling. Stoletov KV, Ratcliffe KE, Terman BI. FASEB J. 2002 Aug;16(10):1283–5. PubMed Europe PMC Scholia
- Sck is expressed in endothelial cells and participates in vascular endothelial growth factor-induced signaling. Ratcliffe KE, Tao Q, Yavuz B, Stoletov KV, Spring SC, Terman BI. Oncogene. 2002 Sep 12;21(41):6307–16. PubMed Europe PMC Scholia
- KDR stimulates endothelial cell migration through heterotrimeric G protein Gq/11-mediated activation of a small GTPase RhoA. Zeng H, Zhao D, Mukhopadhyay D. J Biol Chem. 2002 Nov 29;277(48):46791–8. PubMed Europe PMC Scholia
- Sphingosine kinase mediates vascular endothelial growth factor-induced activation of ras and mitogen-activated protein kinases. Shu X, Wu W, Mosteller RD, Broek D. Mol Cell Biol. 2002 Nov;22(22):7758–68. PubMed Europe PMC Scholia
- Characterization of mac25/angiomodulin expression by high endothelial venule cells in lymphoid tissues and its identification as an inducible marker for activated endothelial cells. Usui T, Murai T, Tanaka T, Yamaguchi K, Nagakubo D, Lee CM, et al. Int Immunol. 2002 Nov;14(11):1273–82. PubMed Europe PMC Scholia
- NFATc1 mediates vascular endothelial growth factor-induced proliferation of human pulmonary valve endothelial cells. Johnson EN, Lee YM, Sander TL, Rabkin E, Schoen FJ, Kaushal S, et al. J Biol Chem. 2003 Jan 17;278(3):1686–92. PubMed Europe PMC Scholia
- p38 MAP kinase--a molecular switch between VEGF-induced angiogenesis and vascular hyperpermeability. Issbrücker K, Marti HH, Hippenstiel S, Springmann G, Voswinckel R, Gaumann A, et al. FASEB J. 2003 Feb;17(2):262–4. PubMed Europe PMC Scholia
- Regulation of vascular endothelial growth factor receptor-2 activity by caveolin-1 and plasma membrane cholesterol. Labrecque L, Royal I, Surprenant DS, Patterson C, Gingras D, Béliveau R. Mol Biol Cell. 2003 Jan;14(1):334–47. PubMed Europe PMC Scholia
- Involvement of RhoA/Rho kinase signaling in VEGF-induced endothelial cell migration and angiogenesis in vitro. van Nieuw Amerongen GP, Koolwijk P, Versteilen A, van Hinsbergh VWM. Arterioscler Thromb Vasc Biol. 2003 Feb 1;23(2):211–7. PubMed Europe PMC Scholia
- Small GTP-binding protein Rac is an essential mediator of vascular endothelial growth factor-induced endothelial fenestrations and vascular permeability. Eriksson A, Cao R, Roy J, Tritsaris K, Wahlestedt C, Dissing S, et al. Circulation. 2003 Mar 25;107(11):1532–8. PubMed Europe PMC Scholia
- Model of competitive binding of vascular endothelial growth factor and placental growth factor to VEGF receptors on endothelial cells. Mac Gabhann F, Popel AS. Am J Physiol Heart Circ Physiol. 2004 Jan;286(1):H153-64. PubMed Europe PMC Scholia
- ADAMTS1/METH1 inhibits endothelial cell proliferation by direct binding and sequestration of VEGF165. Luque A, Carpizo DR, Iruela-Arispe ML. J Biol Chem. 2003 Jun 27;278(26):23656–65. PubMed Europe PMC Scholia
- Contact inhibition of VEGF-induced proliferation requires vascular endothelial cadherin, beta-catenin, and the phosphatase DEP-1/CD148. Grazia Lampugnani M, Zanetti A, Corada M, Takahashi T, Balconi G, Breviario F, et al. J Cell Biol. 2003 May 26;161(4):793–804. PubMed Europe PMC Scholia
- Vascular endothelial growth factor regulates focal adhesion assembly in human brain microvascular endothelial cells through activation of the focal adhesion kinase and related adhesion focal tyrosine kinase. Avraham HK, Lee TH, Koh Y, Kim TA, Jiang S, Sussman M, et al. J Biol Chem. 2003 Sep 19;278(38):36661–8. PubMed Europe PMC Scholia
- Vascular endothelial growth factor causes translocation of p47phox to membrane ruffles through WAVE1. Wu RF, Gu Y, Xu YC, Nwariaku FE, Terada LS. J Biol Chem. 2003 Sep 19;278(38):36830–40. PubMed Europe PMC Scholia
- Neuropilin-1-mediated vascular permeability factor/vascular endothelial growth factor-dependent endothelial cell migration. Wang L, Zeng H, Wang P, Soker S, Mukhopadhyay D. J Biol Chem. 2003 Dec 5;278(49):48848–60. PubMed Europe PMC Scholia
- Vascular endothelial growth factor (VEGF) induces rapid prourokinase (pro-uPA) activation on the surface of endothelial cells. Prager GW, Breuss JM, Steurer S, Mihaly J, Binder BR. Blood. 2004 Feb 1;103(3):955–62. PubMed Europe PMC Scholia
- Vascular endothelial growth factor-regulated gene expression in endothelial cells: KDR-mediated induction of Egr3 and the related nuclear receptors Nur77, Nurr1, and Nor1. Liu D, Jia H, Holmes DIR, Stannard A, Zachary I. Arterioscler Thromb Vasc Biol. 2003 Nov 1;23(11):2002–7. PubMed Europe PMC Scholia
- Vascular endothelial growth factor activates PI3K/Akt/forkhead signaling in endothelial cells. Abid MR, Guo S, Minami T, Spokes KC, Ueki K, Skurk C, et al. Arterioscler Thromb Vasc Biol. 2004 Feb;24(2):294–300. PubMed Europe PMC Scholia
- Phosphorylation of tyrosine 1214 on VEGFR2 is required for VEGF-induced activation of Cdc42 upstream of SAPK2/p38. Lamalice L, Houle F, Jourdan G, Huot J. Oncogene. 2004 Jan 15;23(2):434–45. PubMed Europe PMC Scholia
- Down syndrome critical region protein 1 (DSCR1), a novel VEGF target gene that regulates expression of inflammatory markers on activated endothelial cells. Hesser BA, Liang XH, Camenisch G, Yang S, Lewin DA, Scheller R, et al. Blood. 2004 Jul 1;104(1):149–58. PubMed Europe PMC Scholia
- The adaptor protein shb binds to tyrosine 1175 in vascular endothelial growth factor (VEGF) receptor-2 and regulates VEGF-dependent cellular migration. Holmqvist K, Cross MJ, Rolny C, Hägerkvist R, Rahimi N, Matsumoto T, et al. J Biol Chem. 2004 May 21;279(21):22267–75. PubMed Europe PMC Scholia
- Nck and Crk mediate distinct VEGF-induced signaling pathways that serve overlapping functions in focal adhesion turnover and integrin activation. Stoletov KV, Gong C, Terman BI. Exp Cell Res. 2004 Apr 15;295(1):258–68. PubMed Europe PMC Scholia
- Vascular endothelial growth factor receptor-2-induced initial endothelial cell migration depends on the presence of the urokinase receptor. Prager GW, Breuss JM, Steurer S, Olcaydu D, Mihaly J, Brunner PM, et al. Circ Res. 2004 Jun 25;94(12):1562–70. PubMed Europe PMC Scholia
- Serum response factor is a critical requirement for VEGF signaling in endothelial cells and VEGF-induced angiogenesis. Chai J, Jones MK, Tarnawski AS. FASEB J. 2004 Aug;18(11):1264–6. PubMed Europe PMC Scholia
- Nuclear factor of activated T cells balances angiogenesis activation and inhibition. Zaichuk TA, Shroff EH, Emmanuel R, Filleur S, Nelius T, Volpert OV. J Exp Med. 2004 Jun 7;199(11):1513–22. PubMed Europe PMC Scholia
- Bmx is a downstream Rap1 effector in VEGF-induced endothelial cell activation. Stoletov KV, Terman BI. Biochem Biophys Res Commun. 2004 Jul 16;320(1):70–5. PubMed Europe PMC Scholia
- IQGAP1, a novel vascular endothelial growth factor receptor binding protein, is involved in reactive oxygen species--dependent endothelial migration and proliferation. Yamaoka-Tojo M, Ushio-Fukai M, Hilenski L, Dikalov SI, Chen YE, Tojo T, et al. Circ Res. 2004 Aug 6;95(3):276–83. PubMed Europe PMC Scholia
- Regulation of vascular endothelial growth factor receptor 2-mediated phosphorylation of focal adhesion kinase by heat shock protein 90 and Src kinase activities. Le Boeuf F, Houle F, Huot J. J Biol Chem. 2004 Sep 10;279(37):39175–85. PubMed Europe PMC Scholia
- Vascular endothelial growth factor-mediated induction of manganese superoxide dismutase occurs through redox-dependent regulation of forkhead and IkappaB/NF-kappaB. Abid MR, Schoots IG, Spokes KC, Wu SQ, Mawhinney C, Aird WC. J Biol Chem. 2004 Oct 15;279(42):44030–8. PubMed Europe PMC Scholia
- p38 Mitogen-activated protein kinase regulation of endothelial cell migration depends on urokinase plasminogen activator expression. Yu J, Bian D, Mahanivong C, Cheng RK, Zhou W, Huang S. J Biol Chem. 2004 Nov 26;279(48):50446–54. PubMed Europe PMC Scholia
- Vascular endothelial growth factor- and thrombin-induced termination factor, Down syndrome critical region-1, attenuates endothelial cell proliferation and angiogenesis. Minami T, Horiuchi K, Miura M, Abid MR, Takabe W, Noguchi N, et al. J Biol Chem. 2004 Nov 26;279(48):50537–54. PubMed Europe PMC Scholia
- Vascular endothelial growth factor (VEGF)-A165-induced prostacyclin synthesis requires the activation of VEGF receptor-1 and -2 heterodimer. Neagoe PE, Lemieux C, Sirois MG. J Biol Chem. 2005 Mar 18;280(11):9904–12. PubMed Europe PMC Scholia
- The vascular endothelial growth factor-induced disruption of gap junctions is relayed by an autocrine communication via ATP release in coronary capillary endothelium. Thuringer D. Ann N Y Acad Sci. 2004 Dec;1030:14–27. PubMed Europe PMC Scholia
- Phospholipase Cgamma-Erk Axis in vascular endothelial growth factor-induced eukaryotic initiation factor 4E phosphorylation and protein synthesis in renal epithelial cells. Mariappan MM, Senthil D, Natarajan KS, Choudhury GG, Kasinath BS. J Biol Chem. 2005 Aug 5;280(31):28402–11. PubMed Europe PMC Scholia
- Angiopoietin-1 opposes VEGF-induced increase in endothelial permeability by inhibiting TRPC1-dependent Ca2 influx. Jho D, Mehta D, Ahmmed G, Gao XP, Tiruppathi C, Broman M, et al. Circ Res. 2005 Jun 24;96(12):1282–90. PubMed Europe PMC Scholia
- Protein kinase C-dependent protein kinase D activation modulates ERK signal pathway and endothelial cell proliferation by vascular endothelial growth factor. Wong C, Jin ZG. J Biol Chem. 2005 Sep 30;280(39):33262–9. PubMed Europe PMC Scholia
- Involvement of COX-2 in VEGF-induced angiogenesis via P38 and JNK pathways in vascular endothelial cells. Wu G, Luo J, Rana JS, Laham R, Sellke FW, Li J. Cardiovasc Res. 2006 Feb 1;69(2):512–9. PubMed Europe PMC Scholia
- The angiogenic function of nucleolin is mediated by vascular endothelial growth factor and nonmuscle myosin. Huang Y, Shi H, Zhou H, Song X, Yuan S, Luo Y. Blood. 2006 May 1;107(9):3564–71. PubMed Europe PMC Scholia
- MAPKAPK-2-mediated LIM-kinase activation is critical for VEGF-induced actin remodeling and cell migration. Kobayashi M, Nishita M, Mishima T, Ohashi K, Mizuno K. EMBO J. 2006 Feb 22;25(4):713–26. PubMed Europe PMC Scholia
- Role of MSK1 in the signaling pathway leading to VEGF-mediated PAF synthesis in endothelial cells. Marchand C, Favier J, Sirois MG. J Cell Biochem. 2006 Aug 1;98(5):1095–105. PubMed Europe PMC Scholia
- IP-10 blocks vascular endothelial growth factor-induced endothelial cell motility and tube formation via inhibition of calpain. Bodnar RJ, Yates CC, Wells A. Circ Res. 2006 Mar 17;98(5):617–25. PubMed Europe PMC Scholia
- Rho and ROCK signaling in VEGF-induced microvascular endothelial hyperpermeability. Sun H, Breslin JW, Zhu J, Yuan SY, Wu MH. Microcirculation. 2006;13(3):237–47. PubMed Europe PMC Scholia
- Diverse effects of vascular endothelial growth factor on human pulmonary endothelial barrier and migration. Mirzapoiazova T, Kolosova I, Usatyuk PV, Natarajan V, Verin AD. Am J Physiol Lung Cell Mol Physiol. 2006 Oct;291(4):L718-24. PubMed Europe PMC Scholia
- Phosphorylation of focal adhesion kinase (FAK) on Ser732 is induced by rho-dependent kinase and is essential for proline-rich tyrosine kinase-2-mediated phosphorylation of FAK on Tyr407 in response to vascular endothelial growth factor. Le Boeuf F, Houle F, Sussman M, Huot J. Mol Biol Cell. 2006 Aug;17(8):3508–20. PubMed Europe PMC Scholia
- The adaptor protein Gab1 couples the stimulation of vascular endothelial growth factor receptor-2 to the activation of phosphoinositide 3-kinase. Dance M, Montagner A, Yart A, Masri B, Audigier Y, Perret B, et al. J Biol Chem. 2006 Aug 11;281(32):23285–95. PubMed Europe PMC Scholia
- Vascular endothelial cadherin controls VEGFR-2 internalization and signaling from intracellular compartments. Lampugnani MG, Orsenigo F, Gagliani MC, Tacchetti C, Dejana E. J Cell Biol. 2006 Aug 14;174(4):593–604. PubMed Europe PMC Scholia
- Phosphorylation of Tyr1214 within VEGFR-2 triggers the recruitment of Nck and activation of Fyn leading to SAPK2/p38 activation and endothelial cell migration in response to VEGF. Lamalice L, Houle F, Huot J. J Biol Chem. 2006 Nov 10;281(45):34009–20. PubMed Europe PMC Scholia
- The novel Src kinase inhibitor M475271 inhibits VEGF-induced vascular endothelial-cadherin and beta-catenin phosphorylation but increases their association. Ali N, Yoshizumi M, Yano S, Sone S, Ohnishi H, Ishizawa K, et al. J Pharmacol Sci. 2006 Sep;102(1):112–20. PubMed Europe PMC Scholia
- Intrinsic tyrosine kinase activity is required for vascular endothelial growth factor receptor 2 ubiquitination, sorting and degradation in endothelial cells. Ewan LC, Jopling HM, Jia H, Mittar S, Bagherzadeh A, Howell GJ, et al. Traffic. 2006 Sep;7(9):1270–82. PubMed Europe PMC Scholia
- VEGF controls endothelial-cell permeability by promoting the beta-arrestin-dependent endocytosis of VE-cadherin. Gavard J, Gutkind JS. Nat Cell Biol. 2006 Nov;8(11):1223–34. PubMed Europe PMC Scholia
- VEGF activation of protein kinase C stimulates occludin phosphorylation and contributes to endothelial permeability. Harhaj NS, Felinski EA, Wolpert EB, Sundstrom JM, Gardner TW, Antonetti DA. Invest Ophthalmol Vis Sci. 2006 Nov;47(11):5106–15. PubMed Europe PMC Scholia
- The scaffolding adapter Gab1 mediates vascular endothelial growth factor signaling and is required for endothelial cell migration and capillary formation. Laramée M, Chabot C, Cloutier M, Stenne R, Holgado-Madruga M, Wong AJ, et al. J Biol Chem. 2007 Mar 16;282(11):7758–69. PubMed Europe PMC Scholia
- AMP-activated protein kinase mediates VEGF-stimulated endothelial NO production. Reihill JA, Ewart MA, Hardie DG, Salt IP. Biochem Biophys Res Commun. 2007 Mar 23;354(4):1084–8. PubMed Europe PMC Scholia
- Phosphorylation of tyrosine 801 of vascular endothelial growth factor receptor-2 is necessary for Akt-dependent endothelial nitric-oxide synthase activation and nitric oxide release from endothelial cells. Blanes MG, Oubaha M, Rautureau Y, Gratton JP. J Biol Chem. 2007 Apr 6;282(14):10660–9. PubMed Europe PMC Scholia
- Essential role of PDK1 in regulating endothelial cell migration. Primo L, di Blasio L, Roca C, Droetto S, Piva R, Schaffhausen B, et al. J Cell Biol. 2007 Mar 26;176(7):1035–47. PubMed Europe PMC Scholia
- A critical role for the E3-ligase activity of c-Cbl in VEGFR-2-mediated PLCgamma1 activation and angiogenesis. Singh AJ, Meyer RD, Navruzbekov G, Shelke R, Duan L, Band H, et al. Proc Natl Acad Sci U S A. 2007 Mar 27;104(13):5413–8. PubMed Europe PMC Scholia
- Agonist-modulated regulation of AMP-activated protein kinase (AMPK) in endothelial cells. Evidence for an AMPK -> Rac1 -> Akt -> endothelial nitric-oxide synthase pathway. Levine YC, Li GK, Michel T. J Biol Chem. 2007 Jul 13;282(28):20351–64. PubMed Europe PMC Scholia
- Vascular endothelial growth factor receptor-2: structure, function, intracellular signalling and therapeutic inhibition. Holmes K, Roberts OL, Thomas AM, Cross MJ. Cell Signal. 2007 Oct;19(10):2003–12. PubMed Europe PMC Scholia
- VEGF-induced Rac1 activation in endothelial cells is regulated by the guanine nucleotide exchange factor Vav2. Garrett TA, Van Buul JD, Burridge K. Exp Cell Res. 2007 Sep 10;313(15):3285–97. PubMed Europe PMC Scholia
- NADPH oxidase activity selectively modulates vascular endothelial growth factor signaling pathways. Abid MR, Spokes KC, Shih SC, Aird WC. J Biol Chem. 2007 Nov 30;282(48):35373–85. PubMed Europe PMC Scholia
- Defective angiogenesis, endothelial migration, proliferation, and MAPK signaling in Rap1b-deficient mice. Chrzanowska-Wodnicka M, Kraus AE, Gale D, White GC 2nd, Vansluys J. Blood. 2008 Mar 1;111(5):2647–56. PubMed Europe PMC Scholia
- The zinc-finger transcription factor, early growth response 3, mediates VEGF-induced angiogenesis. Liu D, Evans I, Britton G, Zachary I. Oncogene. 2008 May 8;27(21):2989–98. PubMed Europe PMC Scholia
- A novel role of vascular endothelial cadherin in modulating c-Src activation and downstream signaling of vascular endothelial growth factor. Ha CH, Bennett AM, Jin ZG. J Biol Chem. 2008 Mar 14;283(11):7261–70. PubMed Europe PMC Scholia
- Protein kinase D-dependent phosphorylation and nuclear export of histone deacetylase 5 mediates vascular endothelial growth factor-induced gene expression and angiogenesis. Ha CH, Wang W, Jhun BS, Wong C, Hausser A, Pfizenmaier K, et al. J Biol Chem. 2008 May 23;283(21):14590–9. PubMed Europe PMC Scholia
- Src homology 2 (SH2) domain containing protein tyrosine phosphatase-1 (SHP-1) dephosphorylates VEGF Receptor-2 and attenuates endothelial DNA synthesis, but not migration*. Bhattacharya R, Kwon J, Wang E, Mukherjee P, Mukhopadhyay D. J Mol Signal. 2008 Mar 31;3:8. PubMed Europe PMC Scholia
- Vascular endothelial growth factor induces heat shock protein (HSP) 27 serine 82 phosphorylation and endothelial tubulogenesis via protein kinase D and independent of p38 kinase. Evans IM, Britton G, Zachary IC. Cell Signal. 2008 Jul;20(7):1375–84. PubMed Europe PMC Scholia
- Vascular endothelial growth factor induces MEF2C and MEF2-dependent activity in endothelial cells. Maiti D, Xu Z, Duh EJ. Invest Ophthalmol Vis Sci. 2008 Aug;49(8):3640–8. PubMed Europe PMC Scholia
- Role of protein tyrosine phosphatase 1B in vascular endothelial growth factor signaling and cell-cell adhesions in endothelial cells. Nakamura Y, Patrushev N, Inomata H, Mehta D, Urao N, Kim HW, et al. Circ Res. 2008 May 23;102(10):1182–91. PubMed Europe PMC Scholia
- Control of endothelial cell proliferation and migration by VEGF signaling to histone deacetylase 7. Wang S, Li X, Parra M, Verdin E, Bassel-Duby R, Olson EN. Proc Natl Acad Sci U S A. 2008 Jun 3;105(22):7738–43. PubMed Europe PMC Scholia
- VEGF stimulates HDAC7 phosphorylation and cytoplasmic accumulation modulating matrix metalloproteinase expression and angiogenesis. Ha CH, Jhun BS, Kao HY, Jin ZG. Arterioscler Thromb Vasc Biol. 2008 Oct;28(10):1782–8. PubMed Europe PMC Scholia
- Vascular endothelial growth factor and semaphorin induce neuropilin-1 endocytosis via separate pathways. Salikhova A, Wang L, Lanahan AA, Liu M, Simons M, Leenders WPJ, et al. Circ Res. 2008 Sep 12;103(6):e71-9. PubMed Europe PMC Scholia
- Epoxyeicosatrienoic acids are part of the VEGF-activated signaling cascade leading to angiogenesis. Webler AC, Michaelis UR, Popp R, Barbosa-Sicard E, Murugan A, Falck JR, et al. Am J Physiol Cell Physiol. 2008 Nov;295(5):C1292-301. PubMed Europe PMC Scholia
- Role of the small GTPase Rap1 for integrin activity regulation in endothelial cells and angiogenesis. Carmona G, Göttig S, Orlandi A, Scheele J, Bäuerle T, Jugold M, et al. Blood. 2009 Jan 8;113(2):488–97. PubMed Europe PMC Scholia
- Transcription enhancer factor 3 (TEF3) mediates the expression of Down syndrome candidate region 1 isoform 1 (DSCR1-1L) in endothelial cells. Liu X, Zhao D, Qin L, Li J, Zeng H. J Biol Chem. 2008 Dec 5;283(49):34159–67. PubMed Europe PMC Scholia
- New role for the protein tyrosine phosphatase DEP-1 in Akt activation and endothelial cell survival. Chabot C, Spring K, Gratton JP, Elchebly M, Royal I. Mol Cell Biol. 2009 Jan;29(1):241–53. PubMed Europe PMC Scholia
- Activated STAT3 is a mediator and biomarker of VEGF endothelial activation. Chen SH, Murphy DA, Lassoued W, Thurston G, Feldman MD, Lee WMF. Cancer Biol Ther. 2008 Dec;7(12):1994–2003. PubMed Europe PMC Scholia
- An ezrin/calpain/PI3K/AMPK/eNOSs1179 signaling cascade mediating VEGF-dependent endothelial nitric oxide production. Youn JY, Wang T, Cai H. Circ Res. 2009 Jan 2;104(1):50–9. PubMed Europe PMC Scholia
- IQGAP1-dependent signaling pathway regulates endothelial cell proliferation and angiogenesis. Meyer RD, Sacks DB, Rahimi N. PLoS One. 2008;3(12):e3848. PubMed Europe PMC Scholia
- Inhibition of Rho-dependent kinases ROCK I/II activates VEGF-driven retinal neovascularization and sprouting angiogenesis. Kroll J, Epting D, Kern K, Dietz CT, Feng Y, Hammes HP, et al. Am J Physiol Heart Circ Physiol. 2009 Mar;296(3):H893-9. PubMed Europe PMC Scholia
- Distinct role of PLCbeta3 in VEGF-mediated directional migration and vascular sprouting. Bhattacharya R, Kwon J, Li X, Wang E, Patra S, Bida JP, et al. J Cell Sci. 2009 Apr 1;122(Pt 7):1025–34. PubMed Europe PMC Scholia
- FHL-2 suppresses VEGF-induced phosphatidylinositol 3-kinase/Akt activation via interaction with sphingosine kinase-1. Hayashi H, Nakagami H, Takami Y, Koriyama H, Mori M, Tamai K, et al. Arterioscler Thromb Vasc Biol. 2009 Jun;29(6):909–14. PubMed Europe PMC Scholia
- Occludin phosphorylation and ubiquitination regulate tight junction trafficking and vascular endothelial growth factor-induced permeability. Murakami T, Felinski EA, Antonetti DA. J Biol Chem. 2009 Jul 31;284(31):21036–46. PubMed Europe PMC Scholia
- VEGF and RANKL regulation of NFATc1 in heart valve development. Combs MD, Yutzey KE. Circ Res. 2009 Sep 11;105(6):565–74. PubMed Europe PMC Scholia
- The VEGF-induced transcriptional response comprises gene clusters at the crossroad of angiogenesis and inflammation. Schweighofer B, Testori J, Sturtzel C, Sattler S, Mayer H, Wagner O, et al. Thromb Haemost. 2009 Sep;102(3):544–54. PubMed Europe PMC Scholia
- Ligand-stimulated VEGFR2 signaling is regulated by co-ordinated trafficking and proteolysis. Bruns AF, Herbert SP, Odell AF, Jopling HM, Hooper NM, Zachary IC, et al. Traffic. 2010 Jan;11(1):161–74. PubMed Europe PMC Scholia
- Differential functions of genes regulated by VEGF-NFATc1 signaling pathway in the migration of pulmonary valve endothelial cells. Jang GH, Park IS, Yang JH, Bischoff J, Lee YM. FEBS Lett. 2010 Jan 4;584(1):141–6. PubMed Europe PMC Scholia
- Vascular endothelial growth factor activation of endothelial cells is mediated by early growth response-3. Suehiro J ichi, Hamakubo T, Kodama T, Aird WC, Minami T. Blood. 2010 Mar 25;115(12):2520–32. PubMed Europe PMC Scholia
- Regulation of vascular endothelial growth factor-induced endothelial cell migration by LIM kinase 1-mediated phosphorylation of annexin 1. Côté MC, Lavoie JR, Houle F, Poirier A, Rousseau S, Huot J. J Biol Chem. 2010 Mar 12;285(11):8013–21. PubMed Europe PMC Scholia
- Filamin B plays a key role in vascular endothelial growth factor-induced endothelial cell motility through its interaction with Rac-1 and Vav-2. Del Valle-Pérez B, Martínez VG, Lacasa-Salavert C, Figueras A, Shapiro SS, Takafuta T, et al. J Biol Chem. 2010 Apr 2;285(14):10748–60. PubMed Europe PMC Scholia
- Activation of AMP-activated protein kinase by vascular endothelial growth factor mediates endothelial angiogenesis independently of nitric-oxide synthase. Stahmann N, Woods A, Spengler K, Heslegrave A, Bauer R, Krause S, et al. J Biol Chem. 2010 Apr 2;285(14):10638–52. PubMed Europe PMC Scholia
- RhoA/ROCK signaling is essential for multiple aspects of VEGF-mediated angiogenesis. Bryan BA, Dennstedt E, Mitchell DC, Walshe TE, Noma K, Loureiro R, et al. FASEB J. 2010 Sep;24(9):3186–95. PubMed Europe PMC Scholia
- Role of afadin in vascular endothelial growth factor- and sphingosine 1-phosphate-induced angiogenesis. Tawa H, Rikitake Y, Takahashi M, Amano H, Miyata M, Satomi-Kobayashi S, et al. Circ Res. 2010 Jun 11;106(11):1731–42. PubMed Europe PMC Scholia
- Expression profiling of ETS and MMP factors in VEGF-activated endothelial cells: role of MMP-10 in VEGF-induced angiogenesis. Heo SH, Choi YJ, Ryoo HM, Cho JY. J Cell Physiol. 2010 Sep;224(3):734–42. PubMed Europe PMC Scholia
- VEGF receptor 2 endocytic trafficking regulates arterial morphogenesis. Lanahan AA, Hermans K, Claes F, Kerley-Hamilton JS, Zhuang ZW, Giordano FJ, et al. Dev Cell. 2010 May 18;18(5):713–24. PubMed Europe PMC Scholia
- Deciphering mechanisms controlling placental artery endothelial cell migration stimulated by vascular endothelial growth factor. Liao W xiang, Feng L, Zheng J, Chen D bao. Endocrinology. 2010 Jul;151(7):3432–44. PubMed Europe PMC Scholia
- Growth factor stimulation induces cell survival by c-Jun. ATF2-dependent activation of Bcl-XL. Salameh A, Galvagni F, Anselmi F, De Clemente C, Orlandini M, Oliviero S. J Biol Chem. 2010 Jul 23;285(30):23096–104. PubMed Europe PMC Scholia
- Methyl 2-cyano-3,11-dioxo-18-olean-1,12-dien-30-oate (CDODA-Me), a derivative of glycyrrhetinic acid, functions as a potent angiogenesis inhibitor. Pang X, Zhang L, Wu Y, Lin L, Li J, Qu W, et al. J Pharmacol Exp Ther. 2010 Oct;335(1):172–9. PubMed Europe PMC Scholia
- PKG-I inhibition attenuates vascular endothelial growth factor-stimulated angiogenesis. Koika V, Zhou Z, Vasileiadis I, Roussos C, Finetti F, Monti M, et al. Vascul Pharmacol. 2010;53(5–6):215–22. PubMed Europe PMC Scholia
- Rac1-dependent intracellular superoxide formation mediates vascular endothelial growth factor-induced placental angiogenesis in vitro. Li S min, Zeng L wen, Feng L, Chen D bao. Endocrinology. 2010 Nov;151(11):5315–25. PubMed Europe PMC Scholia
- Klotho is associated with VEGF receptor-2 and the transient receptor potential canonical-1 Ca2+ channel to maintain endothelial integrity. Kusaba T, Okigaki M, Matui A, Murakami M, Ishikawa K, Kimura T, et al. Proc Natl Acad Sci U S A. 2010 Nov 9;107(45):19308–13. PubMed Europe PMC Scholia
- RhoJ/TCL regulates endothelial motility and tube formation and modulates actomyosin contractility and focal adhesion numbers. Kaur S, Leszczynska K, Abraham S, Scarcia M, Hiltbrunner S, Marshall CJ, et al. Arterioscler Thromb Vasc Biol. 2011 Mar;31(3):657–64. PubMed Europe PMC Scholia
- Requirement of the nuclear localization of transcription enhancer factor 3 for proliferation, migration, tube formation, and angiogenesis induced by vascular endothelial growth factor. Liu X, Zhao D, James L, Li J, Zeng H. FASEB J. 2011 Apr;25(4):1188–97. PubMed Europe PMC Scholia
- RACK1 regulates VEGF/Flt1-mediated cell migration via activation of a PI3K/Akt pathway. Wang F, Yamauchi M, Muramatsu M, Osawa T, Tsuchida R, Shibuya M. J Biol Chem. 2011 Mar 18;286(11):9097–106. PubMed Europe PMC Scholia
- Neuropilin-1 signaling through p130Cas tyrosine phosphorylation is essential for growth factor-dependent migration of glioma and endothelial cells. Evans IM, Yamaji M, Britton G, Pellet-Many C, Lockie C, Zachary IC, et al. Mol Cell Biol. 2011 Mar;31(6):1174–85. PubMed Europe PMC Scholia
- Neuropilin-1 promotes VEGFR-2 trafficking through Rab11 vesicles thereby specifying signal output. Ballmer-Hofer K, Andersson AE, Ratcliffe LE, Berger P. Blood. 2011 Jul 21;118(3):816–26. PubMed Europe PMC Scholia
- Rap1 promotes VEGFR2 activation and angiogenesis by a mechanism involving integrin αvβ₃. Lakshmikanthan S, Sobczak M, Chun C, Henschel A, Dargatz J, Ramchandran R, et al. Blood. 2011 Aug 18;118(7):2015–26. PubMed Europe PMC Scholia
- VEGF binding to NRP1 is essential for VEGF stimulation of endothelial cell migration, complex formation between NRP1 and VEGFR2, and signaling via FAK Tyr407 phosphorylation. Herzog B, Pellet-Many C, Britton G, Hartzoulakis B, Zachary IC. Mol Biol Cell. 2011 Aug 1;22(15):2766–76. PubMed Europe PMC Scholia
- Regulation of VEGF-induced endothelial cell migration by mitochondrial reactive oxygen species. Wang Y, Zang QS, Liu Z, Wu Q, Maass D, Dulan G, et al. Am J Physiol Cell Physiol. 2011 Sep;301(3):C695-704. PubMed Europe PMC Scholia
- Ca2+ influx through reverse mode Na+/Ca2+ exchange is critical for vascular endothelial growth factor-mediated extracellular signal-regulated kinase (ERK) 1/2 activation and angiogenic functions of human endothelial cells. Andrikopoulos P, Baba A, Matsuda T, Djamgoz MBA, Yaqoob MM, Eccles SA. J Biol Chem. 2011 Nov 4;286(44):37919–31. PubMed Europe PMC Scholia
- Vascular endothelial growth factor stimulates endothelial colony forming cells proliferation and tubulogenesis by inducing oscillations in intracellular Ca2+ concentration. Dragoni S, Laforenza U, Bonetti E, Lodola F, Bottino C, Berra-Romani R, et al. Stem Cells. 2011 Nov;29(11):1898–907. PubMed Europe PMC Scholia
- Novel role of p66Shc in ROS-dependent VEGF signaling and angiogenesis in endothelial cells. Oshikawa J, Kim SJ, Furuta E, Caliceti C, Chen GF, McKinney RD, et al. Am J Physiol Heart Circ Physiol. 2012 Feb 1;302(3):H724-32. PubMed Europe PMC Scholia
- The role of RhoJ in endothelial cell biology and angiogenesis. Leszczynska K, Kaur S, Wilson E, Bicknell R, Heath VL. Biochem Soc Trans. 2011 Dec;39(6):1606–11. PubMed Europe PMC Scholia
- A novel function of p38-regulated/activated kinase in endothelial cell migration and tumor angiogenesis. Yoshizuka N, Chen RM, Xu Z, Liao R, Hong L, Hu WY, et al. Mol Cell Biol. 2012 Feb;32(3):606–18. PubMed Europe PMC Scholia
- Direct sensing of endothelial oxidants by vascular endothelial growth factor receptor-2 and c-Src. Lee M, Choy WC, Abid MR. PLoS One. 2011;6(12):e28454. PubMed Europe PMC Scholia
- VEGF-induced vascular permeability is mediated by FAK. Chen XL, Nam JO, Jean C, Lawson C, Walsh CT, Goka E, et al. Dev Cell. 2012 Jan 17;22(1):146–57. PubMed Europe PMC Scholia
- VEGF-induced endothelial cell migration requires urokinase receptor (uPAR)-dependent integrin redistribution. Alexander RA, Prager GW, Mihaly-Bison J, Uhrin P, Sunzenauer S, Binder BR, et al. Cardiovasc Res. 2012 Apr 1;94(1):125–35. PubMed Europe PMC Scholia
- Protein kinase cβ phosphorylates occludin regulating tight junction trafficking in vascular endothelial growth factor-induced permeability in vivo. Murakami T, Frey T, Lin C, Antonetti DA. Diabetes. 2012 Jun;61(6):1573–83. PubMed Europe PMC Scholia
- c-Jun N-terminal kinase mediated VEGFR2 sustained phosphorylation is critical for VEGFA-induced angiogenesis in vitro and in vivo. Shen K, Ji L, Lu B, Wang Z. Cell Biochem Biophys. 2012 Sep;64(1):17–27. PubMed Europe PMC Scholia
- VEGFR2 induces c-Src signaling and vascular permeability in vivo via the adaptor protein TSAd. Sun Z, Li X, Massena S, Kutschera S, Padhan N, Gualandi L, et al. J Exp Med. 2012 Jul 2;209(7):1363–77. PubMed Europe PMC Scholia
- Tyrosine phosphatase PTP-MEG2 negatively regulates vascular endothelial growth factor receptor signaling and function in endothelial cells. Hao Q, Samten B, Ji HL, Zhao ZJ, Tang H. Am J Physiol Cell Physiol. 2012 Sep 1;303(5):C548-53. PubMed Europe PMC Scholia
- Annexin-1-mediated endothelial cell migration and angiogenesis are regulated by vascular endothelial growth factor (VEGF)-induced inhibition of miR-196a expression. Pin AL, Houle F, Fournier P, Guillonneau M, Paquet ÉR, Simard MJ, et al. J Biol Chem. 2012 Aug 31;287(36):30541–51. PubMed Europe PMC Scholia
- S-glutathionylation of LMW-PTP regulates VEGF-mediated FAK activation and endothelial cell migration. Abdelsaid MA, El-Remessy AB. J Cell Sci. 2012 Oct 15;125(Pt 20):4751–60. PubMed Europe PMC Scholia
- Stimulus-dependent phosphorylation of profilin-1 in angiogenesis. Fan Y, Arif A, Gong Y, Jia J, Eswarappa SM, Willard B, et al. Nat Cell Biol. 2012 Oct;14(10):1046–56. PubMed Europe PMC Scholia
- Arhgef15 promotes retinal angiogenesis by mediating VEGF-induced Cdc42 activation and potentiating RhoJ inactivation in endothelial cells. Kusuhara S, Fukushima Y, Fukuhara S, Jakt LM, Okada M, Shimizu Y, et al. PLoS One. 2012;7(9):e45858. PubMed Europe PMC Scholia
- uPAR: a modulator of VEGF-induced angiogenesis. Uhrin P, Breuss JM. Cell Adh Migr. 2013;7(1):23–6. PubMed Europe PMC Scholia
- Essential role for endocytosis in the growth factor-stimulated activation of ERK1/2 in endothelial cells. Gourlaouen M, Welti JC, Vasudev NS, Reynolds AR. J Biol Chem. 2013 Mar 15;288(11):7467–80. PubMed Europe PMC Scholia
- Monoubiquitination of filamin B regulates vascular endothelial growth factor-mediated trafficking of histone deacetylase 7. Su YT, Gao C, Liu Y, Guo S, Wang A, Wang B, et al. Mol Cell Biol. 2013 Apr;33(8):1546–60. PubMed Europe PMC Scholia
- Phosphoproteomic analysis implicates the mTORC2-FoxO1 axis in VEGF signaling and feedback activation of receptor tyrosine kinases. Zhuang G, Yu K, Jiang Z, Chung A, Yao J, Ha C, et al. Sci Signal. 2013 Apr 16;6(271):ra25. PubMed Europe PMC Scholia
- Thioredoxin-interacting protein expression is required for VEGF-mediated angiogenic signal in endothelial cells. Abdelsaid MA, Matragoon S, El-Remessy AB. Antioxid Redox Signal. 2013 Dec 20;19(18):2199–212. PubMed Europe PMC Scholia
- ETS factors regulate Vegf-dependent arterial specification. Wythe JD, Dang LTH, Devine WP, Boudreau E, Artap ST, He D, et al. Dev Cell. 2013 Jul 15;26(1):45–58. PubMed Europe PMC Scholia
- VEGF-A mRNA processing, stability and translation: a paradigm for intricate regulation of gene expression at the post-transcriptional level. Arcondéguy T, Lacazette E, Millevoi S, Prats H, Touriol C. Nucleic Acids Res. 2013 Sep;41(17):7997–8010. PubMed Europe PMC Scholia
- Lysine methylation promotes VEGFR-2 activation and angiogenesis. Hartsough EJ, Meyer RD, Chitalia V, Jiang Y, Marquez VE, Zhdanova IV, et al. Sci Signal. 2013 Dec 3;6(304):ra104. PubMed Europe PMC Scholia
- VEGF Signals through ATF6 and PERK to promote endothelial cell survival and angiogenesis in the absence of ER stress. Karali E, Bellou S, Stellas D, Klinakis A, Murphy C, Fotsis T. Mol Cell. 2014 May 22;54(4):559–72. PubMed Europe PMC Scholia
- Endosome-to-Plasma Membrane Recycling of VEGFR2 Receptor Tyrosine Kinase Regulates Endothelial Function and Blood Vessel Formation. Jopling HM, Odell AF, Pellet-Many C, Latham AM, Frankel P, Sivaprasadarao A, et al. Cells. 2014 Apr 29;3(2):363–85. PubMed Europe PMC Scholia
- VEGF-A isoforms differentially regulate ATF-2-dependent VCAM-1 gene expression and endothelial-leukocyte interactions. Fearnley GW, Odell AF, Latham AM, Mughal NA, Bruns AF, Burgoyne NJ, et al. Mol Biol Cell. 2014 Aug 15;25(16):2509–21. PubMed Europe PMC Scholia
- Genome-wide approaches reveal functional vascular endothelial growth factor (VEGF)-inducible nuclear factor of activated T cells (NFAT) c1 binding to angiogenesis-related genes in the endothelium. Suehiro J ichi, Kanki Y, Makihara C, Schadler K, Miura M, Manabe Y, et al. J Biol Chem. 2014 Oct 17;289(42):29044–59. PubMed Europe PMC Scholia
- VEGF-induced neoangiogenesis is mediated by NAADP and two-pore channel-2-dependent Ca2+ signaling. Favia A, Desideri M, Gambara G, D’Alessio A, Ruas M, Esposito B, et al. Proc Natl Acad Sci U S A. 2014 Nov 4;111(44):E4706-15. PubMed Europe PMC Scholia
- N-terminal cleavage and release of the ectodomain of Flt1 is mediated via ADAM10 and ADAM 17 and regulated by VEGFR2 and the Flt1 intracellular domain. Raikwar NS, Liu KZ, Thomas CP. PLoS One. 2014 Nov 11;9(11):e112794. PubMed Europe PMC Scholia
- Regulation of endothelial cell proliferation and vascular assembly through distinct mTORC2 signaling pathways. Wang S, Amato KR, Song W, Youngblood V, Lee K, Boothby M, et al. Mol Cell Biol. 2015 Apr;35(7):1299–313. PubMed Europe PMC Scholia
- Receptor protein tyrosine phosphatase beta/zeta is a functional binding partner for vascular endothelial growth factor. Koutsioumpa M, Poimenidi E, Pantazaka E, Theodoropoulou C, Skoura A, Megalooikonomou V, et al. Mol Cancer. 2015 Feb 3;14(1):19. PubMed Europe PMC Scholia
- VEGF-A isoform-specific regulation of calcium ion flux, transcriptional activation and endothelial cell migration. Fearnley GW, Bruns AF, Wheatcroft SB, Ponnambalam S. Biol Open. 2015 Apr 24;4(6):731–42. PubMed Europe PMC Scholia
- Autocrine VEGF maintains endothelial survival through regulation of metabolism and autophagy. Domigan CK, Warren CM, Antanesian V, Happel K, Ziyad S, Lee S, et al. J Cell Sci. 2015 Jun 15;128(12):2236–48. PubMed Europe PMC Scholia
- Connexin43 phosphorylation by PKC and MAPK signals VEGF-mediated gap junction internalization. Nimlamool W, Andrews RMK, Falk MM. Mol Biol Cell. 2015 Aug 1;26(15):2755–68. PubMed Europe PMC Scholia
- RhoC maintains vascular homeostasis by regulating VEGF-induced signaling in endothelial cells. Hoeppner LH, Sinha S, Wang Y, Bhattacharya R, Dutta S, Gong X, et al. J Cell Sci. 2015 Oct 1;128(19):3556–68. PubMed Europe PMC Scholia
- C/EBPβ and Nuclear Factor of Activated T Cells Differentially Regulate Adamts-1 Induction by Stimuli Associated with Vascular Remodeling. Oller J, Alfranca A, Méndez-Barbero N, Villahoz S, Lozano-Vidal N, Martín-Alonso M, et al. Mol Cell Biol. 2015 Oct;35(19):3409–22. PubMed Europe PMC Scholia
- Vascular endothelial growth factor increases GEnC permeability by affecting the distributions of occludin, ZO-1 and tight juction assembly. Zhang L, Liu H, Peng YM, Dai YY, Liu FY. Eur Rev Med Pharmacol Sci. 2015;19(14):2621–7. PubMed Europe PMC Scholia
- MULTIMERIN2 binds VEGF-A primarily via the carbohydrate chains exerting an angiostatic function and impairing tumor growth. Colladel R, Pellicani R, Andreuzzi E, Paulitti A, Tarticchio G, Todaro F, et al. Oncotarget. 2016 Jan 12;7(2):2022–37. PubMed Europe PMC Scholia
- Comparative Phosphoproteomics Analysis of VEGF and Angiopoietin-1 Signaling Reveals ZO-1 as a Critical Regulator of Endothelial Cell Proliferation. Chidiac R, Zhang Y, Tessier S, Faubert D, Delisle C, Gratton JP. Mol Cell Proteomics. 2016 May;15(5):1511–25. PubMed Europe PMC Scholia
- PTP1B inhibitor promotes endothelial cell motility by activating the DOCK180/Rac1 pathway. Wang Y, Yan F, Ye Q, Wu X, Jiang F. Sci Rep. 2016 Apr 7;6:24111. PubMed Europe PMC Scholia
- Vascular Endothelial Growth Factor Increases Endothelial Nitric Oxide Synthase Transcription In Huvec Cells. Koai E, Rios TR, Edwards J. Webmedcentral. 2010;1(11):WMC001111. PubMed Europe PMC Scholia
- Vascular Endothelial Growth Factor (VEGF) Promotes Assembly of the p130Cas Interactome to Drive Endothelial Chemotactic Signaling and Angiogenesis. Evans IM, Kennedy SA, Paliashvili K, Santra T, Yamaji M, Lovering RC, et al. Mol Cell Proteomics. 2017 Feb;16(2):168–80. PubMed Europe PMC Scholia
- TNFSF15 inhibits VEGF-stimulated vascular hyperpermeability by inducing VEGFR2 dephosphorylation. Yang GL, Zhao Z, Qin TT, Wang D, Chen L, Xiang R, et al. FASEB J. 2017 May;31(5):2001–12. PubMed Europe PMC Scholia
- RCAN1.4 regulates VEGFR-2 internalisation, cell polarity and migration in human microvascular endothelial cells. Alghanem AF, Wilkinson EL, Emmett MS, Aljasir MA, Holmes K, Rothermel BA, et al. Angiogenesis. 2017 Aug;20(3):341–58. PubMed Europe PMC Scholia
- Autocrine VEGF and IL-8 Promote Migration via Src/Vav2/Rac1/PAK1 Signaling in Human Umbilical Vein Endothelial Cells. Ju L, Zhou Z, Jiang B, Lou Y, Guo X. Cell Physiol Biochem. 2017;41(4):1346–59. PubMed Europe PMC Scholia
- VEGF165-induced vascular permeability requires NRP1 for ABL-mediated SRC family kinase activation. Fantin A, Lampropoulou A, Senatore V, Brash JT, Prahst C, Lange CA, et al. J Exp Med. 2017 Apr 3;214(4):1049–64. PubMed Europe PMC Scholia
- Syntenin promotes VEGF-induced VEGFR2 endocytosis and angiogenesis by increasing ephrin-B2 function in endothelial cells. Tae N, Lee S, Kim O, Park J, Na S, Lee JH. Oncotarget. 2017 Jun 13;8(24):38886–901. PubMed Europe PMC Scholia
- ROS-induced ROS release orchestrated by Nox4, Nox2, and mitochondria in VEGF signaling and angiogenesis. Kim YM, Kim SJ, Tatsunami R, Yamamura H, Fukai T, Ushio-Fukai M. Am J Physiol Cell Physiol. 2017 Jun 1;312(6):C749–64. PubMed Europe PMC Scholia
- Vascular Endothelial Growth Factor Augments Arginine Transport and Nitric Oxide Generation via a KDR Receptor Signaling Pathway. Shashar M, Chernichovski T, Pasvolsky O, Levi S, Grupper A, Hershkovitz R, et al. Kidney Blood Press Res. 2017;42(2):201–8. PubMed Europe PMC Scholia
- Coupling between the TRPC3 ion channel and the NCX1 transporter contributed to VEGF-induced ERK1/2 activation and angiogenesis in human primary endothelial cells. Andrikopoulos P, Eccles SA, Yaqoob MM. Cell Signal. 2017 Sep;37:12–30. PubMed Europe PMC Scholia
- Dynamic regulation of VEGF-inducible genes by an ERK/ERG/p300 transcriptional network. Fish JE, Cantu Gutierrez M, Dang LT, Khyzha N, Chen Z, Veitch S, et al. Development. 2017 Jul 1;144(13):2428–44. PubMed Europe PMC Scholia
- VEGF amplifies transcription through ETS1 acetylation to enable angiogenesis. Chen J, Fu Y, Day DS, Sun Y, Wang S, Liang X, et al. Nat Commun. 2017 Aug 29;8(1):383. PubMed Europe PMC Scholia
- FGD5 sustains vascular endothelial growth factor A (VEGFA) signaling through inhibition of proteasome-mediated VEGF receptor 2 degradation. Heldin J, O’Callaghan P, Hernández Vera R, Fuchs PF, Gerwins P, Kreuger J. Cell Signal. 2017 Dec;40:125–32. PubMed Europe PMC Scholia
- LDB2 regulates the expression of DLL4 through the formation of oligomeric complexes in endothelial cells. Choi HJ, Rho SS, Choi DH, Kwon YG. BMB Rep. 2018 Jan;51(1):21–6. PubMed Europe PMC Scholia
- FGD5 Regulates VEGF Receptor-2 Coupling to PI3 Kinase and Receptor Recycling. Farhan MA, Azad AK, Touret N, Murray AG. Arterioscler Thromb Vasc Biol. 2017 Dec;37(12):2301–10. PubMed Europe PMC Scholia
- VEGF promotes endothelial progenitor cell differentiation and vascular repair through connexin 43. Li L, Liu H, Xu C, Deng M, Song M, Yu X, et al. Stem Cell Res Ther. 2017 Oct 24;8(1):237. PubMed Europe PMC Scholia
- VEGF stimulated the angiogenesis by promoting the mitochondrial functions. Guo D, Wang Q, Li C, Wang Y, Chen X. Oncotarget. 2017 Aug 18;8(44):77020–7. PubMed Europe PMC Scholia
- Rap1B promotes VEGF-induced endothelial permeability and is required for dynamic regulation of the endothelial barrier. Lakshmikanthan S, Sobczak M, Li Calzi S, Shaw L, Grant MB, Chrzanowska-Wodnicka M. J Cell Sci. 2018 Jan 10;131(1):jcs207605. PubMed Europe PMC Scholia
- Endoglin interacts with VEGFR2 to promote angiogenesis. Tian H, Huang JJ, Golzio C, Gao X, Hector-Greene M, Katsanis N, et al. FASEB J. 2018 Jun;32(6):2934–49. PubMed Europe PMC Scholia
- Inhibition of Endothelial SCUBE2 (Signal Peptide-CUB-EGF Domain-Containing Protein 2), a Novel VEGFR2 (Vascular Endothelial Growth Factor Receptor 2) Coreceptor, Suppresses Tumor Angiogenesis. Lin YC, Liu CY, Kannagi R, Yang RB. Arterioscler Thromb Vasc Biol. 2018 May;38(5):1202–15. PubMed Europe PMC Scholia
- VEGF (Vascular Endothelial Growth Factor) Induces NRP1 (Neuropilin-1) Cleavage via ADAMs (a Disintegrin and Metalloproteinase) 9 and 10 to Generate Novel Carboxy-Terminal NRP1 Fragments That Regulate Angiogenic Signaling. Mehta V, Fields L, Evans IM, Yamaji M, Pellet-Many C, Jones T, et al. Arterioscler Thromb Vasc Biol. 2018 Aug;38(8):1845–58. PubMed Europe PMC Scholia
- Survivin is critically involved in VEGFR2 signaling-mediated esophageal cancer cell survival. Meng L, Fuhao Z, Xiaoming Z, Yuxiu Z, Zhaojun D, Bingcheng L, et al. Biomed Pharmacother. 2018 Nov;107:139–45. PubMed Europe PMC Scholia