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Protein Kinase C-ζ Phosphorylates Insulin Receptor Substrate-1 -3 and -4 But Not -2: Isoform Specific Determinants of Specificity in Insulin Signaling

机译:蛋白激酶C-ζ磷酸化胰岛素受体底物1-3和-4但不包括-2:在胰岛素信号传导中特异性的同工型特异性决定子

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摘要

Protein kinase C-ζ, a downstream effector of phosphatidylinositol 3-kinase (PI3K), phosphorylates insulin receptor substrate (IRS)-1 on serine residues impairing activation of PI3K in response to insulin. Because IRS-1 is upstream from PI3K, this represents a negative feedback mechanism that may contribute to signal specificity in insulin action. To determine whether similar feedback pathways exist for other IRS isoforms, we evaluated IRS-2, -3, and -4 as substrates for PKC-ζ. In an in vitro kinase assay, purified recombinant PKC-ζ phosphorylated IRS-1, -3 and -4 but not IRS-2. Similar results were obtained with an immune-complex kinase assay demonstrating that wild-type, but not kinase-deficient mutant PKC-ζ, phosphorylated IRS-1, -3, and -4 but not IRS-2. We evaluated functional consequences of serine phosphorylation of IRS isoforms by PKC-ζ in NIH-3T3IR cells cotransfected with epitope-tagged IRS proteins and either PKC-ζ or empty vector control. Insulin-stimulated IRS tyrosine phosphorylation was impaired by overepxression of PKC-ζ for IRS-1, -3, and -4 but not IRS-2. Significant insulin-stimulated increases in PI3K activity was coimmunoprecipitated with all IRS isoforms. In cells overexpressing PKC-ζ there was marked inhibition of insulin-stimulated PI3K activity associated with IRS-1, -3 and -4 but not IRS-2. That is, PI3K activity associated with IRS-2 in response to insulin was similar in control cells and cells overexpressing PKC-ζ. We conclude that IRS-3 and -4 are novel substrates for PKC-ζ that may participate in a negative feedback pathway for insulin signaling similar to IRS-1. The inability of PKC-ζ to phosphorylate IRS-2 may help determine specific functional roles for IRS-2.
机译:蛋白激酶C-ζ是磷脂酰肌醇3激酶(PI3K)的下游效应子,使丝氨酸残基上的胰岛素受体底物(IRS)-1磷酸化,从而削弱了PI3K响应胰岛素的活化。由于IRS-1位于PI3K的上游,因此这代表了一种负反馈机制,可能有助于胰岛素作用中的信号特异性。为了确定其他IRS亚型是否存在类似的反馈途径,我们评估了IRS-2,-3和-4作为PKC-ζ的底物。在体外激酶测定中,纯化的重组PKC-ζ磷酸化了IRS-1,-3和-4,但未将IRS-2磷酸化。用免疫复合激酶测定获得了相似的结果,表明野生型但不是激酶缺陷型突变体PKC-ζ,磷酸化的IRS-1,-3和-4而不是IRS-2。我们评估了PKC-ζ在表位标记的IRS蛋白和PKC-ζ或空载体对照共转染的NIH-3T3 IR 细胞中IRS亚型丝氨酸磷酸化的功能后果。胰岛素刺激的IRS酪氨酸磷酸化受到IRS-1,-3和-4而不是IRS-2PKC-ζ过量表达的损害。胰岛素刺激的PI3K活性显着增加与所有IRS亚型共免疫沉淀。在过表达PKC-ζ的细胞中,与IRS-1,-3和-4相关的胰岛素刺激的PI3K活性受到明显抑制,但与IRS-2无关。也就是说,与IRS-2有关的胰岛素响应的PI3K活性在对照细胞和过表达PKC-ζ的细胞中是相似的。我们得出的结论是,IRS-3和-4是PKC-ζ的新型底物,可能参与类似于IRS-1的胰岛素信号的负反馈途径。 PKC-ζ不能磷酸化IRS-2可能有助于确定IRS-2的特定功能。

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