Protein phosphatase-1 and insulin action

被引:1
作者
Louis Ragolia
Najma Begum
机构
[1] Winthrop University Hospital,The Diabetes Research Laboratory
[2] State University of New York,School of Medicine
来源
Molecular and Cellular Biochemistry | 1998年 / 182卷
关键词
protein phosphatase-1; insulin; glycogen synthesis;
D O I
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中图分类号
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摘要
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-α (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.
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页码:49 / 58
页数:9
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共 253 条
[1]  
Saltiel AR(1996)Diverse signalling pathways in the cellular actions of insulin Am J Physiol 270 E375-E385
[2]  
Cheatham B(1995)Insulin action and the insulin signalling network Endo Rev 16 117-142
[3]  
Kahn RC(1994)The insulin signalling system J Biol Chem 269 1-4
[4]  
White MF(1994)Insulin signalling Trends Cell Biol 4 115-119
[5]  
Kahn CR(1989)Insulin stimulates dephosphorylation of phosphorylase in rat epitrochlearis muscle J Biol Chem 264 17513-17523
[6]  
Keller SR(1987)Effects of insulin infusion on human skeletal muscle pyruvate dehydrogenase, phosphofructokinase and glycogen synthase J Clin Invest 80 655-663
[7]  
Lienhard GE(1984)Correlation between muscle glycogen synthase activity and J Clin Invest 73 1185-1190
[8]  
Zhang J.(1992) insulin action in man Am J Physiol 255 E769-E774
[9]  
Hiken J(1992)Rates and tissue sites of non-insulin and insulin-mediated glucose uptake in humans Ann Rev Physiol 54 177-193
[10]  
Davis AK(1990)Signal transduction and protein phosphorylation in the regulation of cellular metabolism Messenger Phosphoprotein Res 24 230-235