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蛋白磷酸酶-1与胰岛素作用

Protein phosphatase-1 and insulin action.

作者信息

Ragolia L, Begum N

机构信息

The Diabetes Research Laboratory, Winthrop University Hospital, Mineola, NY 11501, USA.

出版信息

Mol Cell Biochem. 1998 May;182(1-2):49-58.

PMID:9609113
Abstract

Protein Phosphatase-1 (PP-1) appears to be the key component of the insulin signalling pathway which is responsible for bridging the initial insulin-simulated phosphorylation cascade with the ultimate dephosphorylation of insulin sensitive substrates. Dephosphorylations catalyzed by PP-1 activate glycogen synthase (GS) and simultaneously inactivate phosphorylase a and phosphorylase kinase promoting glycogen synthesis. Our in vivo studies using L6 rat skeletal muscle cells and freshly isolated adipocytes indicate that insulin stimulates PP-1 by increasing the phosphorylation status of its regulatory subunit (PP-1G). PP-1 activation is accompanied by an inactivation of Protein Phosphatase-2A (PP-2A) activity. To gain insight into the upstream kinases that mediate insulin-stimulated PP-1G phosphorylation, we employed inhibitors of the ras/MAPK, PI3-kinase, and PKC signalling pathways. These inhibitor studies suggest that PP-1G phosphorylation is mediated via a complex, cell type specific mechanism involving PI3-kinase/PKC/PKB and/or the ras/MAP kinase/Rsk kinase cascade. cAMP agonists such as SpcAMP (via PKA) and TNF-alpha (recently identified as endogenous inhibitor of insulin action via ceramide) block insulin-stimulated PP-1G phosphorylation with a parallel decrease of PP-1 activity, presumably due to the dissociation of the PP-1 catalytic subunit from the regulatory G-subunit. It appears that any agent or condition which interferes with the insulin-induced phosphorylation and activation of PP-1, will decrease the magnitude of insulin's effect on downstream metabolic processes. Therefore, regulation of the PP-1G subunit by site-specific phosphorylation plays an important role in insulin signal transduction in target cells. Mechanistic and functional studies with cell lines expressing PP-1G subunit site-specific mutations will help clarify the exact role and regulation of PP-1G site-specific phosphorylations on PP-1 catalytic function.

摘要

蛋白磷酸酶-1(PP-1)似乎是胰岛素信号通路的关键组成部分,该通路负责将最初的胰岛素刺激的磷酸化级联反应与胰岛素敏感底物的最终去磷酸化联系起来。PP-1催化的去磷酸化激活糖原合酶(GS),同时使磷酸化酶a和磷酸化酶激酶失活,从而促进糖原合成。我们使用L6大鼠骨骼肌细胞和新鲜分离的脂肪细胞进行的体内研究表明,胰岛素通过增加其调节亚基(PP-1G)的磷酸化状态来刺激PP-1。PP-1的激活伴随着蛋白磷酸酶-2A(PP-2A)活性的失活。为了深入了解介导胰岛素刺激的PP-1G磷酸化的上游激酶,我们使用了ras/MAPK、PI3激酶和PKC信号通路的抑制剂。这些抑制剂研究表明,PP-1G磷酸化是通过一种复杂的、细胞类型特异性机制介导的,该机制涉及PI3激酶/PKC/PKB和/或ras/MAP激酶/Rsk激酶级联反应。cAMP激动剂如SpcAMP(通过PKA)和TNF-α(最近被确定为通过神经酰胺的胰岛素作用的内源性抑制剂)可阻断胰岛素刺激的PP-1G磷酸化,并同时降低PP-1活性,这可能是由于PP-1催化亚基与调节性G亚基的解离所致。似乎任何干扰胰岛素诱导的PP-1磷酸化和激活的因素或条件,都会降低胰岛素对下游代谢过程的影响程度。因此,通过位点特异性磷酸化对PP-1G亚基的调节在靶细胞的胰岛素信号转导中起着重要作用。对表达PP-1G亚基位点特异性突变的细胞系进行的机制和功能研究,将有助于阐明PP-1G位点特异性磷酸化对PP-1催化功能的确切作用和调节。

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