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Analysis of insulin receptor substrate signaling dynamics on microstructured surfaces

机译:分析微结构表面上胰岛素受体底物的信号动力学

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Insulin receptor substrates (IRS) are phosphorylated by activated insulin/insulin-like growth factor I receptor tyrosine kinases, with this comprising an initial key event for downstream signaling and bioactivities. Despite the structural similarities, increasing evidence shows that IRS family proteins have nonredundant functions. Although the specificity of insulin/insulin-like growth factor signaling and biological responses partly reflects which IRS proteins are dominantly phosphorylated by the receptors, the precise properties of the respective IRS interaction with the receptors remain elusive. In the present study, we utilized a technique that combines micropatterned surfaces and total internal reflection fluorescence microscopy for the quantitative analysis of the interaction between IRS proteins and insulin/insulin-like growth factor in living cells. Our experimental set-up enabled the measurement of equilibrium associations and interaction dynamics of these molecules with high specificity. We revealed that several domains of IRS including pleckstrin homology and phosphotyrosine binding domains critically determine the turnover rate of the receptors. Furthermore, we found significant differences among IRS proteins in the strength and kinetic stability of the interaction with the receptors, suggesting that these interaction properties could account for the diverse functions of IRS. In addition, our analyses using fluorescent recovery after photobleaching revealed that kinases such as c-Jun N-terminal kinase and IB kinase , which phosphorylate serine/threonine residues of IRS and contribute to insulin resistance, altered the interaction kinetics of IRS with insulin receptor. Collectively, our experimental set-up is a valuable system for quantitifying the physiological interaction of IRS with the receptors in insulin/insulin-like growth factor signaling.
机译:胰岛素受体底物(IRS)被活化的胰岛素/胰岛素样生长因子I受体酪氨酸激酶磷酸化,这包括下游信号传导和生物活性的主要关键事件。尽管结构相似,但越来越多的证据表明IRS家族蛋白具有非冗余功能。尽管胰岛素/胰岛素样生长因子信号转导和生物学反应的特异性部分反映了哪些IRS蛋白被受体显着磷酸化,但是与受体的各自IRS相互作用的精确特性仍然难以捉摸。在本研究中,我们利用微模式表面和全内反射荧光显微镜相结合的技术对活细胞中IRS蛋白与胰岛素/胰岛素样生长因子之间的相互作用进行定量分析。我们的实验装置能够以高特异性测量这些分子的平衡缔合和相互作用动力学。我们揭示了IRS的几个域,包括pleckstrin同源性和磷酸酪氨酸结合域,决定了受体的更新率。此外,我们发现IRS蛋白之间在与受体相互作用的强度和动力学稳定性方面存在显着差异,这表明这些相互作用特性可以解释IRS的多种功能。此外,我们使用光漂白后的荧光回收率进行的分析表明,激酶(例如c-Jun N端激酶和IB激酶)可磷酸化IRS的丝氨酸/苏氨酸残基并有助于胰岛素抵抗,从而改变了IRS与胰岛素受体的相互作用动力学。总的来说,我们的实验设置是一个有价值的系统,可用于量化IRS与胰岛素/胰岛素样生长因子信号转导中受体的生理相互作用。

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