首页> 美国卫生研究院文献>Molecular and Cellular Biology >The Pleckstrin Homology (PH) Domain-Interacting Protein Couples the Insulin Receptor Substrate 1 PH Domain to Insulin Signaling Pathways Leading to Mitogenesis and GLUT4 Translocation
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The Pleckstrin Homology (PH) Domain-Interacting Protein Couples the Insulin Receptor Substrate 1 PH Domain to Insulin Signaling Pathways Leading to Mitogenesis and GLUT4 Translocation

机译:Pleckstrin同源性(PH)结构域相互作用蛋白将胰岛素受体底物1 PH结构域耦合到导致有丝分裂和GLUT4易位的胰岛素信号传导途径

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摘要

Receptor-mediated tyrosine phosphorylation of the insulin receptor substrate 1 (IRS-1) is required for the propagation of many of insulin's biological effects. The amino-terminal pleckstrin homology (PH) domain of IRS-1 plays a pivotal role in promoting insulin receptor (IR)-IRS-1 protein interactions. We have recently reported the isolation of a PH domain-interacting protein, PHIP, which selectively binds to the IRS-1 PH domain and is stably associated with IRS-1 in mammalian cells. Here we demonstrate that overexpression of PHIP in fibroblasts enhances insulin-induced transcriptional responses in a mitogen-activated protein kinase-dependent manner. In contrast, a dominant-negative mutant of PHIP (DN-PHIP) was shown to specifically block transcriptional and mitogenic signals elicited by insulin and not serum. In order to examine whether PHIP/IRS-1 complexes participate in the signal transduction pathway linking the IR to GLUT4 traffic in muscle cells, L6 myoblasts stably expressing a myc-tagged GLUT4 construct (L6GLUT4myc) were transfected with either wild-type or dominant-interfering forms of PHIP. Whereas insulin-dependent GLUT4myc membrane translocation was not affected by overexpression of PHIP, DN-PHIP caused a nearly complete inhibition of GLUT4 translocation, in a manner identical to that observed with a dominant-negative mutant of the p85 subunit of phosphatidylinositol 3-kinase (Δp85). Furthermore, DN-PHIP markedly inhibited insulin-stimulated actin cytoskeletal reorganization, a process required for the productive incorporation of GLUT4 vesicles at the cell surface in L6 cells. Our results are consistent with the hypothesis that PHIP represents a physiological protein ligand of the IRS-1 PH domain, which plays an important role in insulin receptor-mediated mitogenic and metabolic signal transduction.
机译:胰岛素受体底物1(IRS-1)的受体介导的酪氨酸磷酸化对于许多胰岛素的生物学效应的传播是必需的。 IRS-1的氨基末端pleckstrin同源性(PH)结构域在促进胰岛素受体(IR)-IRS-1蛋白相互作用中起关键作用。最近,我们报道了与PH结构域相互作用的蛋白PHIP的分离,该蛋白选择性结合IRS-1 PH结构域并在哺乳动物细胞中与IRS-1稳定结合。在这里,我们证明成纤维细胞中PHIP的过表达以有丝分裂原激活的蛋白激酶依赖性方式增强了胰岛素诱导的转录反应。相反,显示出PHIP的显性负突变体(DN-PHIP)特异性阻断胰岛素而非血清引发的转录和有丝分裂信号。为了检查PHIP / IRS-1复合物是否参与将IR与肌肉细胞中GLUT4流量连接的信号转导途径,将野生型或显性-转染了稳定表达myc标签的GLUT4构建体的L6成肌细胞(L6GLUT4myc)。 PHIP的干扰形式。胰岛素依赖性的GLUT4myc膜易位不受PHIP的过表达影响,而DN-PHIP则几乎完全抑制了GLUT4易位,其作用方式与磷脂酰肌醇3-激酶p85亚基的显性负突变体所观察到的相同( Δp85)。此外,DN-PHIP显着抑制胰岛素刺激的肌动蛋白细胞骨架重组,这是在L6细胞的细胞表面有效整合GLUT4囊泡所必需的过程。我们的结果与以下假设一致:PHIP代表IRS-1 PH域的生理蛋白配体,该配体在胰岛素受体介导的促有丝分裂和代谢信号转导中起重要作用。

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