HDAC6 interactions in the central nervous system (WP5426)
Homo sapiens
HDAC6 stands out as a distinctive member within the histone deacetylase family due to its predominant presence in the cytosol, facilitating its interaction with a wide array of non-histone proteins. Its dysregulation has been linked to various outcomes, encompassing diverse cancer types, immune-related disorders, and neurological conditions, including Alzheimer's, Parkinson's, ALS, Huntington's, Charcot-Marie-Tooth disease, and Rett syndrome. The current network represents the known HDAC6 interactions in the central nervous system (CNS).
Authors
Nasim Bahram Sangani , Alex Pico , Kristina Hanspers , Egon Willighagen , and Eric WeitzActivity
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Cited In
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Organisms
Homo sapiensCommunities
Annotations
Pathway Ontology
regulatory pathway pertinent to the brainLabel | Type | Compact URI | Comment |
---|---|---|---|
MYH9 | GeneProduct | ensembl:ENSG00000100345 | |
TUBA4A | GeneProduct | ensembl:ENSG00000127824 | |
BIRC5 | GeneProduct | ensembl:ENSG00000089685 | |
VCP | GeneProduct | ensembl:ENSG00000165280 | |
tat | GeneProduct | ncbigene:155871 | |
GSK3A | GeneProduct | ensembl:ENSG00000105723 | |
NR3C1 | GeneProduct | ensembl:ENSG00000113580 | |
MYD88 | GeneProduct | ensembl:ENSG00000172936 | |
HSPA8 | GeneProduct | ensembl:ENSG00000109971 | |
KALRN | GeneProduct | ensembl:ENSG00000160145 | |
SEPTIN7 | GeneProduct | ensembl:ENSG00000122545 | |
POU5F1 | GeneProduct | ensembl:ENSG00000204531 | |
OPTN | GeneProduct | ensembl:ENSG00000123240 | |
PARK7 | GeneProduct | ensembl:ENSG00000116288 | |
MAPRE1 | GeneProduct | ensembl:ENSG00000101367 | |
MIIP | GeneProduct | ensembl:ENSG00000116691 | |
ACTR1A | GeneProduct | ensembl:ENSG00000138107 | |
PXN | GeneProduct | ensembl:ENSG00000089159 | |
TWIST1 | GeneProduct | ensembl:ENSG00000122691 | |
CYBB | GeneProduct | ensembl:ENSG00000165168 | |
STUB1 | GeneProduct | ensembl:ENSG00000103266 | |
ATXN3 | GeneProduct | ensembl:ENSG00000066427 | Burnett et al. also found that ataxin-3 interacts with HDAC6 and dynein motor |
HDAC6 | GeneProduct | ensembl:ENSG00000094631 | |
BDNF | GeneProduct | ensembl:ENSG00000176697 | |
APOE | GeneProduct | ensembl:ENSG00000130203 | |
BBIP1 | GeneProduct | ensembl:ENSG00000214413 | |
MAPT | GeneProduct | ensembl:ENSG00000186868 | |
HDAC11 | GeneProduct | ensembl:ENSG00000163517 | |
ERG | GeneProduct | ensembl:ENSG00000157554 | |
HDAC9 | GeneProduct | ensembl:ENSG00000048052 | |
SQSTM1 | GeneProduct | ensembl:ENSG00000161011 | |
TRIM50 | None | ||
UBD | GeneProduct | ensembl:ENSG00000213886 | |
G3BP1 | GeneProduct | ensembl:ENSG00000145907 | |
TPPP | GeneProduct | ensembl:ENSG00000171368 | |
PRKCE | GeneProduct | ensembl:ENSG00000171132 | |
SMAD2 | GeneProduct | ensembl:ENSG00000175387 | |
PROM1 | GeneProduct | ensembl:ENSG00000007062 | |
RAD23B | GeneProduct | ensembl:ENSG00000119318 | |
AKT1 | GeneProduct | ensembl:ENSG00000142208 | |
CFTR | GeneProduct | ensembl:ENSG00000001626 | |
ISG15 | GeneProduct | ensembl:ENSG00000187608 | |
EP300 | GeneProduct | ensembl:ENSG00000100393 | |
SOD1 | GeneProduct | ensembl:ENSG00000142168 | |
GRK2 | GeneProduct | ensembl:ENSG00000173020 | |
GSK3B | GeneProduct | ensembl:ENSG00000082701 | GSK3b was found to co-localize with HDAC6 in hippocampal neurons, and inhibition of GSK3b resulted in decreased binding of antibody to phosphoserine-22, a potential GSK3b phosphorylation site in HDAC6.. We also provide evidence that GSK3b may directly regulate HDAC6. |
PRKCZ | GeneProduct | ensembl:ENSG00000067606 | |
EGFR | GeneProduct | ensembl:ENSG00000146648 | |
AURKA | GeneProduct | ensembl:ENSG00000087586 | AurA phosphorylates HDAC6 to activate |
MAPK3 | GeneProduct | ensembl:ENSG00000102882 | |
MAPK1 | GeneProduct | ensembl:ENSG00000100030 | |
SIRT2 | GeneProduct | ensembl:ENSG00000068903 | |
CDC20 | GeneProduct | ensembl:ENSG00000117399 | |
HSP90AA1 | GeneProduct | ensembl:ENSG00000080824 | |
HSF1 | GeneProduct | ensembl:ENSG00000185122 | |
CTNNB1 | GeneProduct | ensembl:ENSG00000168036 | |
ELP1 | GeneProduct | ensembl:ENSG00000070061 | |
MAPK8 | GeneProduct | ensembl:ENSG00000107643 | |
EP400 | GeneProduct | ensembl:ENSG00000183495 | |
KAT5 | GeneProduct | ensembl:ENSG00000172977 | |
APC | GeneProduct | ensembl:ENSG00000134982 | |
RAC1 | GeneProduct | ensembl:ENSG00000136238 | |
DLG4 | GeneProduct | ensembl:ENSG00000132535 | |
DLG2 | GeneProduct | ensembl:ENSG00000150672 | |
SNCAIP | GeneProduct | ensembl:ENSG00000064692 | |
HTT | GeneProduct | ensembl:ENSG00000197386 | |
ELP3 | GeneProduct | ensembl:ENSG00000134014 | |
PPP1CA | GeneProduct | ensembl:ENSG00000172531 | |
SGK3 | GeneProduct | ensembl:ENSG00000104205 | |
SGK1 | GeneProduct | ensembl:ENSG00000118515 | |
MAP1LC3A | GeneProduct | ensembl:ENSG00000101460 | |
NEDD9 | GeneProduct | ensembl:ENSG00000111859 | |
CSNK2B | GeneProduct | ensembl:ENSG00000204435 | To verify the association of HDAC6 with CK2, we performed a pull-down assay using two recombinant proteins (GST–HDAC6 and CK2 holoenzyme) and individual subunit proteins (Fig. 2C, top). Only CK2 holoenzyme was found to be associated with HDAC6, whereas CK2α and CK2β alone failed to precipitate with HDAC6, indicating that the CK2 holoenzyme associates with HDAC6 |
DCTN1 | GeneProduct | ensembl:ENSG00000204843 | |
GRIA2 | GeneProduct | ensembl:ENSG00000120251 | |
GRIA1 | GeneProduct | ensembl:ENSG00000155511 | |
TARDBP | GeneProduct | ensembl:ENSG00000120948 | |
FUS | GeneProduct | ensembl:ENSG00000089280 | |
DYNC1I2 | GeneProduct | ensembl:ENSG00000077380 | |
CSNK2A2 | GeneProduct | ensembl:ENSG00000070770 | To verify the association of HDAC6 with CK2, we performed a pull-down assay using two recombinant proteins (GST–HDAC6 and CK2 holoenzyme) and individual subunit proteins (Fig. 2C, top). Only CK2 holoenzyme was found to be associated with HDAC6, whereas CK2α and CK2β alone failed to precipitate with HDAC6, indicating that the CK2 holoenzyme associates with HDAC6 |
SP1 | GeneProduct | ensembl:ENSG00000185591 | |
FOXP3 | GeneProduct | ensembl:ENSG00000049768 | |
CCDC141 | GeneProduct | ensembl:ENSG00000163492 | |
HIF1A | GeneProduct | ensembl:ENSG00000100644 | |
PRKN | GeneProduct | ensembl:ENSG00000185345 | |
GARS1 | GeneProduct | ensembl:ENSG00000106105 | Interestingly, pulldown experiments showed that HDAC6 can co-immunoprecipitate with HSPB1 (CMT2E) (Zhang et al., 2007), but also with GlyRS (CMT2D) |
HSPB1 | GeneProduct | ensembl:ENSG00000106211 | |
CTTN | GeneProduct | ensembl:ENSG00000085733 | |
XRCC6 | GeneProduct | ensembl:ENSG00000196419 | |
PRDX1 | GeneProduct | ensembl:ENSG00000117450 | |
PRDX2 | GeneProduct | ensembl:ENSG00000167815 | |
DNAJA1 | GeneProduct | ensembl:ENSG00000086061 | Proteomic identification and functional characterization of MYH9, Hsc70, and DNAJA1 as novel substrates of HDAC6 deacetylase activity |
TUBB | GeneProduct | ensembl:ENSG00000196230 | |
TUBB3 | GeneProduct | ensembl:ENSG00000258947 | |
TUBA1C | GeneProduct | ensembl:ENSG00000167553 | |
TUBA3C | GeneProduct | ensembl:ENSG00000198033 | |
SMAD7 | GeneProduct | ensembl:ENSG00000101665 | Silencing HDAC6 increased SMAD7 protein expression |
tat | GeneProduct | uniprot:155871 | |
BAX | GeneProduct | ensembl:ENSG00000087088 | |
VHL | GeneProduct | ensembl:ENSG00000134086 | |
BCL2 | GeneProduct | ensembl:ENSG00000171791 | |
VIM | Protein | ensembl:ENSG00000026025 | |
MAP1B | Protein | ensembl:ENSG00000131711 | |
SHH | Protein | ensembl:ENSG00000164690 | |
HSPA4 | Protein | ensembl:ENSG00000170606 | |
ITIH4 | Protein | ensembl:ENSG00000055955 | |
PTK2B | Protein | ensembl:ENSG00000120899 | |
MAP3K5 | Protein | ensembl:ENSG00000197442 | |
SNCA | Protein | ensembl:ENSG00000145335 | |
ATP13A2 | Protein | ensembl:ENSG00000159363 | |
ARID3A | Protein | ensembl:ENSG00000116017 | |
MDH1 | Protein | ensembl:ENSG00000014641 | |
NDUFV1 | Protein | ensembl:ENSG00000167792 | |
MIF | Protein | ensembl:ENSG00000240972 | |
RHOT1 | Protein | ensembl:ENSG00000126858 | |
CNOT6 | Protein | ensembl:ENSG00000113300 |
References
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- The polyglutamine neurodegenerative protein ataxin 3 regulates aggresome formation. Burnett BG, Pittman RN. Proc Natl Acad Sci U S A. 2005 Mar 22;102(12):4330–5. PubMed Europe PMC Scholia
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- HDAC6 is a specific deacetylase of peroxiredoxins and is involved in redox regulation. Parmigiani RB, Xu WS, Venta-Perez G, Erdjument-Bromage H, Yaneva M, Tempst P, et al. Proc Natl Acad Sci U S A. 2008 Jul 15;105(28):9633–8. PubMed Europe PMC Scholia
- Histone deacetylase 6 interacts with the microtubule-associated protein tau. Ding H, Dolan PJ, Johnson GVW. J Neurochem. 2008 Sep;106(5):2119–30. PubMed Europe PMC Scholia
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- Interferon-stimulated gene 15 (ISG15) and ISG15-linked proteins can associate with members of the selective autophagic process, histone deacetylase 6 (HDAC6) and SQSTM1/p62. Nakashima H, Nguyen T, Goins WF, Chiocca EA. J Biol Chem. 2015 Jan 16;290(3):1485–95. PubMed Europe PMC Scholia
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- Novel Interaction of Class IIb Histone Deacetylase 6 (HDAC6) with Class IIa HDAC9 Controls Gonadotropin Releasing Hormone (GnRH) Neuronal Cell Survival and Movement. Salian-Mehta S, Xu M, McKinsey TA, Tobet S, Wierman ME. J Biol Chem. 2015 May 29;290(22):14045–56. PubMed Europe PMC Scholia
- ApoE4 and Aβ Oligomers Reduce BDNF Expression via HDAC Nuclear Translocation. Sen A, Nelson TJ, Alkon DL. J Neurosci. 2015 May 13;35(19):7538–51. PubMed Europe PMC Scholia
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- Histone deacetylase 6 promotes growth of glioblastoma through inhibition of SMAD2 signaling. Li S, Liu X, Chen X, Zhang L, Wang X. Tumour Biol. 2015 Dec;36(12):9661–5. PubMed Europe PMC Scholia
- HDAC6 Regulates the Chaperone-Mediated Autophagy to Prevent Oxidative Damage in Injured Neurons after Experimental Spinal Cord Injury. Su M, Guan H, Zhang F, Gao Y, Teng X, Yang W. Oxid Med Cell Longev. 2016;2016:7263736. PubMed Europe PMC Scholia
- SIRT2 inactivation reveals a subset of hyperacetylated perinuclear microtubules inaccessible to HDAC6. Skoge RH, Ziegler M. J Cell Sci. 2016 Aug 1;129(15):2972–82. PubMed Europe PMC Scholia
- Chronic social defeat stress leads to changes of behaviour and memory-associated proteins of young mice. Jianhua F, Wei W, Xiaomei L, Shao-Hui W. Behav Brain Res. 2017 Jan 1;316:136–44. PubMed Europe PMC Scholia
- Rescue of CAMDI deletion-induced delayed radial migration and psychiatric behaviors by HDAC6 inhibitor. Fukuda T, Nagashima S, Abe T, Kiyonari H, Inatome R, Yanagi S. EMBO Rep. 2016 Dec;17(12):1785–98. PubMed Europe PMC Scholia
- Phosphatidylserine Ameliorates Neurodegenerative Symptoms and Enhances Axonal Transport in a Mouse Model of Familial Dysautonomia. Naftelberg S, Abramovitch Z, Gluska S, Yannai S, Joshi Y, Donyo M, et al. PLoS Genet. 2016 Dec 20;12(12):e1006486. PubMed Europe PMC Scholia
- HDAC6 regulates sensitivity to cell death in response to stress and post-stress recovery. Ryu HW, Won HR, Lee DH, Kwon SH. Cell Stress Chaperones. 2017 Mar;22(2):253–61. PubMed Europe PMC Scholia
- The Role of Histone Deacetylase 6 in Synaptic Plasticity and Memory. Perry S, Kiragasi B, Dickman D, Ray A. Cell Rep. 2017 Feb 7;18(6):1337–45. PubMed Europe PMC Scholia
- Crosstalk between HDAC6 and Nox2-based NADPH oxidase mediates HIV-1 Tat-induced pro-inflammatory responses in astrocytes. Youn GS, Cho H, Kim D, Choi SY, Park J. Redox Biol. 2017 Aug;12:978–86. PubMed Europe PMC Scholia
- Lysine Deacetylation by HDAC6 Regulates the Kinase Activity of AKT in Human Neural Progenitor Cells. Iaconelli J, Lalonde J, Watmuff B, Liu B, Mazitschek R, Haggarty SJ, et al. ACS Chem Biol. 2017 Aug 18;12(8):2139–48. PubMed Europe PMC Scholia
- The possible prognostic role of histone deacetylase and transforming growth factor β/Smad signaling in high grade gliomas treated by radio-chemotherapy: a preliminary immunohistochemical study. Sferra R, Pompili S, Festuccia C, Marampon F, Gravina GL, Ventura L, et al. Eur J Histochem. 2017 May 16;61(2):2732. PubMed Europe PMC Scholia
- N-terminal truncations of human bHLH transcription factor Twist1 leads to the formation of aggresomes. Govindarajalu G, Selvam M, Palchamy E, Baluchamy S. Mol Cell Biochem. 2018 Feb;439(1–2):75–85. PubMed Europe PMC Scholia
- Inhibition of HDAC6 increases acetylation of peroxiredoxin1/2 and ameliorates 6-OHDA induced dopaminergic injury. Jian W, Wei X, Chen L, Wang Z, Sun Y, Zhu S, et al. Neurosci Lett. 2017 Sep 29;658:114–20. PubMed Europe PMC Scholia
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- Donepezil attenuates vascular dementia in rats through increasing BDNF induced by reducing HDAC6 nuclear translocation. Jian WX, Zhang Z, Zhan JH, Chu SF, Peng Y, Zhao M, et al. Acta Pharmacol Sin. 2020 May;41(5):588–98. PubMed Europe PMC Scholia
- The microtubule regulator ringer functions downstream from the RNA repair/splicing pathway to promote axon regeneration. Vargas EJM, Matamoros AJ, Qiu J, Jan CH, Wang Q, Gorczyca D, et al. Genes Dev. 2020 Feb 1;34(3–4):194–208. PubMed Europe PMC Scholia
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- Histone deacetylase-6 modulates amyloid beta-induced cognitive dysfunction rats by regulating PTK2B. Liu Z, Hao KM, Wang HY, Qi WX. Neuroreport. 2020 Jul 10;31(10):754–61. PubMed Europe PMC Scholia
- Phospho-HDAC6 Gathers Into Protein Aggregates in Parkinson’s Disease and Atypical Parkinsonisms. Mazzetti S, De Leonardis M, Gagliardi G, Calogero AM, Basellini MJ, Madaschi L, et al. Front Neurosci. 2020 Jun 23;14:624. PubMed Europe PMC Scholia
- Cortactin deacetylation by HDAC6 and SIRT2 regulates neuronal migration and dendrite morphogenesis during cerebral cortex development. Kim JY, Hwang HG, Lee JY, Kim M, Kim JY. Mol Brain. 2020 Jul 25;13(1):105. PubMed Europe PMC Scholia
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- DNA methyltransferase- and histone deacetylase-mediated epigenetic alterations induced by low-level methylmercury exposure disrupt neuronal development. Go S, Kurita H, Hatano M, Matsumoto K, Nogawa H, Fujimura M, et al. Arch Toxicol. 2021 Apr;95(4):1227–39. PubMed Europe PMC Scholia
- Cholesterol alters mitophagy by impairing optineurin recruitment and lysosomal clearance in Alzheimer’s disease. Roca-Agujetas V, Barbero-Camps E, de Dios C, Podlesniy P, Abadin X, Morales A, et al. Mol Neurodegener. 2021 Mar 8;16(1):15. PubMed Europe PMC Scholia
- HDAC6 inhibition restores TDP-43 pathology and axonal transport defects in human motor neurons with TARDBP mutations. Fazal R, Boeynaems S, Swijsen A, De Decker M, Fumagalli L, Moisse M, et al. EMBO J. 2021 Apr 1;40(7):e106177. PubMed Europe PMC Scholia
- Acetylation of NDUFV1 induced by a newly synthesized HDAC6 inhibitor HGC rescues dopaminergic neuron loss in Parkinson models. Li B, Yang Y, Wang Y, Zhang J, Ding J, Liu X, et al. iScience. 2021 Mar 17;24(4):102302. PubMed Europe PMC Scholia
- HDAC6 Negatively Regulates miR-155-5p Expression to Elicit Proliferation by Targeting RHEB in Microvascular Endothelial Cells under Mechanical Unloading. Xu L, Zhang L, Zhang X, Li G, Wang Y, Dong J, et al. Int J Mol Sci. 2021 Sep 29;22(19):10527. PubMed Europe PMC Scholia
- HDAC6 Inhibition Corrects Electrophysiological and Axonal Transport Deficits in a Human Stem Cell-Based Model of Charcot-Marie-Tooth Disease (Type 2D). Smith AST, Kim JH, Chun C, Gharai A, Moon HW, Kim EY, et al. Adv Biol (Weinh). 2022 Feb;6(2):e2101308. PubMed Europe PMC Scholia
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- Acetylated α-tubulin K394 regulates microtubule stability to shape the growth of axon terminals. Saunders HAJ, Johnson-Schlitz DM, Jenkins BV, Volkert PJ, Yang SZ, Wildonger J. Curr Biol. 2022 Feb 7;32(3):614-630.e5. PubMed Europe PMC Scholia
- Inter-relationship of Histone Deacetylase-6 with Tau-cytoskeletal organization and remodeling. Balmik AA, Chinnathambi S. Eur J Cell Biol. 2022 Apr;101(2):151202. PubMed Europe PMC Scholia
- HDAC6 involves in regulating the lncRNA-microRNA-mRNA network to promote the proliferation of glioblastoma cells. Wu AC, Yang WB, Chang KY, Lee JS, Liou JP, Su RY, et al. J Exp Clin Cancer Res. 2022 Feb 2;41(1):47. PubMed Europe PMC Scholia
- Macrophage migration inhibitory factor (MIF) acetylation protects neurons from ischemic injury. Hu JX, Ma WJ, He LY, Zhang CH, Zhang C, Wang Y, et al. Cell Death Dis. 2022 May 18;13(5):466. PubMed Europe PMC Scholia
- Upregulation of MDH1 acetylation by HDAC6 inhibition protects against oxidative stress-derived neuronal apoptosis following intracerebral hemorrhage. Wang M, Zhou C, Yu L, Kong D, Ma W, Lv B, et al. Cell Mol Life Sci. 2022 Jun 9;79(7):356. PubMed Europe PMC Scholia
- Ketamine impairs growth cone and synaptogenesis in human GABAergic projection neurons via GSK-3β and HDAC6 signaling. Li X, Saiyin H, Chen X, Yu Q, Ma L, Liang W. Mol Psychiatry. 2022 Nov 21;10.1038/s41380-022-01864–5. PubMed Europe PMC Scholia
- Combined Inhibition of Hedgehog and HDAC6: In Vitro and In Vivo Studies Reveal a New Role for Lysosomal Stress in Reducing Glioblastoma Cell Viability. Pezzotta A, Brioschi L, Carbone S, Mazzoleni B, Bontempi V, Monastra F, et al. Int J Mol Sci. 2023 Mar 17;24(6):5771. PubMed Europe PMC Scholia