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KMID : 0624620090420020119
BMB Reports
2009 Volume.42 No. 2 p.119 ~ p.124
Knockdown of endogenous SKIP gene enhanced insulin-induced glycogen synthesis signaling in differentiating C2C12 myoblasts
Xiong Qi

Deng Chang-Yan
Chai Jin
Jiang Si-Wen
Xiong Yuan-Zhu
Li Feng-E
Zheng Rong
Abstract
PI(3,4,5)P3 produced by the activated PI3-kinase is a key lipid second messenger in cell signaling downstream of insulin.
Skeletal muscle and kidney-enriched inositol phosphatase (SKIP) identified as a 5¡¯-inositol phosphatase that hydrolyzes PI(3,4,5) P3 to PI(3,4)P2, negatively regulates the insulin-induced glycogen synthesis in skeletal muscle. However the mechanism by which this occurs remains unclear. To elucidate the function of SKIP in glycogen synthesis, we employed RNAi techniques to knockdown the SKIP gene in differentiating C2C12 myoblasts. Insulininduced phosphorylation of Akt (protein kinase B) and GSK-3¥â (Glycogen synthase kinase), subsequent dephosphorylation of glycogen synthase and glycogen synthesis were increased by inhibiting the expression of SKIP, whereas the insulin-induced glycogen
synthesis was decreased by overexpression of WT-SKIP. Our results suggest that SKIP plays a negative regulatory role in
Akt/ GSK-3¥â/GS (glycogen synthase) pathway leading to glycogen synthesis in myocytes.
KEYWORD
Akt, Glycogen synthase, GSK3¥â, RNAi, SKIP
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