This is a competitive renewal of NIH grant DK 33201-05. During the first 4 years substantial progress has been made characterizing the kinase activity of the insulin receptor and determining its role insulin action. We have mapped the sites of autophosphorylation in the beta-subunit, demonstrated that the receptor is regulated by multisite phosphorylation, developed inhibitors of the receptor kinase, used antiphosphotyrosine antibodies to identify cellular substrates, presented evidence for conformation changes in the receptor and possible non-covalent interactions, demonstrated two pools of receptor, shown that phosphorylated insulin and EGF receptors are internalized and characterized alterations in receptor kinase activity in mutant cell lines and disease states. Using in vitro mutagenesis we also have demonstrated that although the kinase activity is required for insulin action, it may not be sufficient. In all over 60 papers are published, in press or submitted as a result of this work. During the next 5 years we propose to further our understanding of the role of tyrosine phosphorylation in insulin action in the following ways: 1. Subsets of the receptor which differ in kinase activity will be characterized and the factors accounting for the activity differences determined. 2. The fate of the phosphorylated receptor in the cell will be studied and the role of both serine and tyrosine phosphorylation as a signal for internalization will be evaluated. 3. Specific cellular substrates will be purified. Antibodies to each will be raised and the amino acid sequence and function of each molecule will be analyzed. 4. The association of the receptor with a phosphotidylinositol kinase and interaction of the receptor with G-proteins will be studied. The role of receptor conformational change in this process will be evaluated. 5. Inhibitors of the receptor kinase will be constructed and introduced into cells by physical means or by construction of expression vectors containing the desired coding sequence. 6. Using in vitro mutagenesis we will study the role of specific receptor residues in signal transduction. 7. Disease and cell culture models of altered receptor kinase activity will be further studied to determine the exact mechanism responsible for the change.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
5R01DK033201-10
Application #
3231567
Study Section
Metabolism Study Section (MET)
Project Start
1983-12-01
Project End
1994-06-30
Budget Start
1992-12-01
Budget End
1994-06-30
Support Year
10
Fiscal Year
1993
Total Cost
Indirect Cost
Name
Joslin Diabetes Center
Department
Type
DUNS #
071723084
City
Boston
State
MA
Country
United States
Zip Code
02215
Rabiee, Atefeh; Krüger, Marcus; Ardenkjær-Larsen, Jacob et al. (2018) Distinct signalling properties of insulin receptor substrate (IRS)-1 and IRS-2 in mediating insulin/IGF-1 action. Cell Signal 47:1-15
Soto, Marion; Herzog, Clémence; Pacheco, Julian A et al. (2018) Gut microbiota modulate neurobehavior through changes in brain insulin sensitivity and metabolism. Mol Psychiatry 23:2287-2301
Altindis, Emrah; Cai, Weikang; Sakaguchi, Masaji et al. (2018) Viral insulin-like peptides activate human insulin and IGF-1 receptor signaling: A paradigm shift for host-microbe interactions. Proc Natl Acad Sci U S A 115:2461-2466
Cai, Weikang; Xue, Chang; Sakaguchi, Masaji et al. (2018) Insulin regulates astrocyte gliotransmission and modulates behavior. J Clin Invest 128:2914-2926
Fujisaka, Shiho; Avila-Pacheco, Julian; Soto, Marion et al. (2018) Diet, Genetics, and the Gut Microbiome Drive Dynamic Changes in Plasma Metabolites. Cell Rep 22:3072-3086
Cai, Weikang; Sakaguchi, Masaji; Kleinridders, Andre et al. (2017) Domain-dependent effects of insulin and IGF-1 receptors on signalling and gene expression. Nat Commun 8:14892
Softic, Samir; Gupta, Manoj K; Wang, Guo-Xiao et al. (2017) Divergent effects of glucose and fructose on hepatic lipogenesis and insulin signaling. J Clin Invest 127:4059-4074
Giles, Daniel A; Moreno-Fernandez, Maria E; Stankiewicz, Traci E et al. (2017) Thermoneutral housing exacerbates nonalcoholic fatty liver disease in mice and allows for sex-independent disease modeling. Nat Med 23:829-838
Kahn, C Ronald; Ussar, Siegfried (2017) Response to Comment on Ussar et al. Regulation of Glucose Uptake and Enteroendocrine Function by the Intestinal Epithelial Insulin Receptor. Diabetes 2017;66:886-896. Diabetes 66:e6
Wang, X; Häring, M-F; Rathjen, T et al. (2017) Insulin resistance in vascular endothelial cells promotes intestinal tumour formation. Oncogene 36:4987-4996

Showing the most recent 10 out of 216 publications