首页> 美国卫生研究院文献>Molecular Endocrinology >Interplay and Effects of Temporal Changes in the Phosphorylation State of Serine-302 -307 and -318 of Insulin Receptor Substrate-1 on Insulin Action in Skeletal Muscle Cells
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Interplay and Effects of Temporal Changes in the Phosphorylation State of Serine-302 -307 and -318 of Insulin Receptor Substrate-1 on Insulin Action in Skeletal Muscle Cells

机译:胰岛素受体底物1的丝氨酸302-307和-318磷酸化状态的相互作用和时间变化对骨骼肌细胞中胰岛素作用的影响

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摘要

Transduction of the insulin signal is mediated by multisite Tyr and Ser/Thr phosphorylation of the insulin receptor substrates (IRSs). Previous studies on the function of single-site phosphorylation, particularly phosphorylation of Ser-302, -307, and -318 of IRS-1, showed attenuating as well as enhancing effects on insulin action. In this study we investigated a possible cross talk of these opposedly acting serine residues in insulin-stimulated skeletal muscle cells by monitoring phosphorylation kinetics, and applying loss of function, gain of function, and combination mutants of IRS-1. The phosphorylation at Ser-302 was rapid and transient, followed first by Ser-318 phosphorylation and later by phosphorylation of Ser-307, which remained elevated for 120 min. Mutation of Ser-302 to alanine clearly reduced the subsequent protein kinase C-ζ-mediated Ser-318 phosphorylation. The Ser-307 phosphorylation was independent of Ser-302 and/or Ser-318 phosphorylation status. The functional consequences of these phosphorylation patterns were studied by the expression of IRS-1 mutants. The E302A307E318 mutant simulating the early phosphorylation pattern resulted in a significant increase in Akt and glycogen synthase kinase 3 phosphorylation. Furthermore, glucose uptake was enhanced. Because the down-regulation of the insulin signal was not affected, this phosphorylation pattern seems to be involved in the enhancement but not in the termination of the insulin signal. This enhancing effect was completely absent when Ser-302 was unphosphorylated and Ser-307 was phosphorylated as simulated by the A302E307E318 mutant. Phospho-Ser-318, sequentially phosphorylated at least by protein kinase C-ζ and a mammalian target of rapamycin/raptor-dependent kinase, was part of the positive as well as of the subsequent negative phosphorylation pattern. Thus we conclude that insulin stimulation temporally generates different phosphorylation statuses of the same residues that exert different functions in insulin signaling.
机译:胰岛素信号的传导是通过胰岛素受体底物(IRS)的多位Tyr和Ser / Thr磷酸化介导的。以前对单位磷酸化功能(特别是IRS-1的Ser-302,-307和-318磷酸化)的研究表明,对胰岛素作用的减弱和增强作用。在这项研究中,我们通过监测磷酸化动力学,应用功能丧失,功能获得和IRS-1组合突变,研究了胰岛素刺激的骨骼肌细胞中这些相反作用的丝氨酸残基的可能串扰。 Ser-302处的磷酸化是快速且短暂的,随后是Ser-318磷酸化,然后是Ser-307的磷酸化,后者在120分钟内保持升高。 Ser-302突变为丙氨酸明显减少了随后的蛋白激酶C-ζ介导的Ser-318磷酸化。 Ser-307磷酸化与Ser-302和/或Ser-318磷酸化状态无关。通过IRS-1突变体的表达研究了这些磷酸化模式的功能后果。模拟早期磷酸化模式的E302A307E318突变体导致Akt和糖原合酶激酶3磷酸化的显着增加。此外,葡萄糖摄取增加。因为不影响胰岛素信号的下调,所以这种磷酸化模式似乎与胰岛素信号的增强有关,但与胰岛素信号的终止无关。当通过A302E307E318突变体模拟时,Ser-302未磷酸化而Ser-307磷酸化时,完全没有这种增强作用。至少被蛋白激酶C-ζ和雷帕霉素/猛禽依赖性激酶的哺乳动物靶标依次磷酸化的Phospho-Ser-318是阳性以及随后的阴性磷酸化模式的一部分。因此,我们得出结论,胰岛素刺激在时间上会产生相同残基的不同磷酸化状态,这些残基在胰岛素信号传导中发挥不同的功能。

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