Type II diabetes mellitus (WP1584)
Homo sapiens
Insulin resistance is strongly associated with type II diabetes. "Diabetogenic" factors including FFA, TNFalpha and cellular stress induce insulin resistance through inhibition of IRS1 functions. Serine/threonine phosphorylation, interaction with SOCS, regulation of the expression, modification of the cellular localization, and degradation represent the molecular mechanisms stimulated by them. Various kinases (ERK, JNK, IKKbeta, PKCzeta, PKCtheta and mTOR) are involved in this process. The development of type II diabetes requires impaired beta-cell function. Chronic hyperglycemia has been shown to induce multiple defects in beta-cells. Hyperglycemia has been proposed to lead to large amounts of reactive oxygen species (ROS) in beta-cells, with subsequent damage to cellular components including PDX-1. Loss of PDX-1, a critical regulator of insulin promoter activity, has also been proposed as an important mechanism leading to beta-cell dysfunction. Although there is little doubt as to the importance of genetic factors in type II diabetes, genetic analysis is difficult due to complex interaction among multiple susceptibility genes and between genetic and environmental factors. Genetic studies have therefore given very diverse results. Kir6.2 and IRS are two of the candidate genes. It is known that Kir6.2 and IRS play central roles in insulin secretion and insulin signal transmission, respectively. Source: [http://www.kegg.jp/dbget-bin/www_bget?pathway+map04930 KEGG] Proteins on this pathway have targeted assays available via the [https://assays.cancer.gov/available_assays?wp_id=WP1584 CPTAC Assay Portal].
Authors
Abhishek , Kristina Hanspers , Chris Evelo , Alex Pico , Daniela Digles , Martina Summer-Kutmon , Denise Slenter , Sharestha Drall , Egon Willighagen , and Eric WeitzActivity
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Cited In
- Identification of candidate genes and pathways in retinopathy of prematurity by whole exome sequencing of preterm infants enriched in phenotypic extremes (2021).
- Cell invasion in digital microfluidic microgel systems (2020).
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Organisms
Homo sapiensCommunities
DiseasesAnnotations
Disease Ontology
diabetes mellitus hyperglycemiaCell Type Ontology
type B pancreatic cell hepatocyte fat cell cell of skeletal musclePathway Ontology
disease pathway type 2 diabetes mellitus pathwayReferences
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- Positive and negative regulation of insulin signaling through IRS-1 phosphorylation. Gual P, Le Marchand-Brustel Y, Tanti JF. Biochimie. 2005 Jan;87(1):99–109. PubMed Europe PMC Scholia
- Oxidative stress, ER stress, and the JNK pathway in type 2 diabetes. Kaneto H, Matsuoka TA, Nakatani Y, Kawamori D, Miyatsuka T, Matsuhisa M, et al. J Mol Med (Berl). 2005 Jun;83(6):429–39. PubMed Europe PMC Scholia