Literature DB >> 17615553

Essential role of PSM/SH2-B variants in insulin receptor catalytic activation and the resulting cellular responses.

Manchao Zhang1, Youping Deng, Ruchi Tandon, Cheng Bai, Heimo Riedel.   

Abstract

The positive regulatory role of PSM/SH2-B downstream of various mitogenic receptor tyrosine kinases or gene disruption experiments in mice support a role of PSM in the regulation of insulin action. Here, four alternative PSM splice variants and individual functional domains were compared for their role in the regulation of specific metabolic insulin responses. We found that individual PSM variants in 3T3-L1 adipocytes potentiated insulin-mediated glucose and amino acid transport, glycogenesis, lipogenesis, and key components in the metabolic insulin response including p70 S6 kinase, glycogen synthase, glycogen synthase kinase 3 (GSK3), Akt, Cbl, and IRS-1. Highest activity was consistently observed for PSM alpha, followed by beta, delta, and gamma with decreasing activity. In contrast, dominant-negative peptide mimetics of the PSM Pro-rich, pleckstrin homology (PH), or src homology 2 (SH2) domains inhibited any tested insulin response. Potentiation of the insulin response originated at the insulin receptor (IR) kinase level by PSM variant-specific regulation of the Km (ATP) whereas the Vmax remained unaffected. IR catalytic activation was inhibited by peptide mimetics of the PSM SH2 or dimerization domain (DD). Either peptide should disrupt the complex of a PSM dimer linked to IR via SH2 domains as proposed for PSM activation of tyrosine kinase JAK2. Either peptide abolished downstream insulin responses indistinguishable from PSM siRNA knockdown. Our results implicate an essential role of the PSM variants in the activation of the IR kinase and the resulting metabolic insulin response. PSM variants act as internal IR ligands that in addition to potentiating the insulin response stimulate IR catalytic activation even in the absence of insulin. Copyright (c) 2007 Wiley-Liss, Inc.

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Year:  2008        PMID: 17615553     DOI: 10.1002/jcb.21397

Source DB:  PubMed          Journal:  J Cell Biochem        ISSN: 0730-2312            Impact factor:   4.429


  10 in total

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Review 2.  SH2B1 regulation of energy balance, body weight, and glucose metabolism.

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7.  Hepatic SH2B1 and SH2B2 regulate liver lipid metabolism and VLDL secretion in mice.

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Journal:  Diabetes       Date:  2020-11-19       Impact factor: 9.461

10.  Functional characterization of obesity-associated variants involving the α and β isoforms of human SH2B1.

Authors:  Laura R Pearce; Ray Joe; Michael E Doche; Hsiao-Wen Su; Julia M Keogh; Elana Henning; Lawrence S Argetsinger; Elena G Bochukova; Joel M Cline; Sumedha Garg; Sadia Saeed; Steven Shoelson; Stephen O'Rahilly; Inês Barroso; Liangyou Rui; I Sadaf Farooqi; Christin Carter-Su
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  10 in total

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