S-nitrosylation-dependent inactivation of Akt/protein kinase B in insulin resistance

被引:215
作者
Yasukawa, T [1 ]
Tokunaga, E [1 ]
Ota, H [1 ]
Sugita, H [1 ]
Martyn, JAJ [1 ]
Kaneki, M [1 ]
机构
[1] Harvard Univ, Sch Med, Shriners Hosp Children, Massachusetts Gen Hosp,Dept Anesthesia & Crit Car, Boston, MA 02114 USA
关键词
D O I
10.1074/jbc.M411871200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Inducible nitric-oxide synthase ( iNOS) has been implicated in many human diseases including insulin resistance. However, how iNOS causes or exacerbates insulin resistance remains largely unknown. Protein S-nitrosylation is now recognized as a prototype of a redox-dependent, cGMP-independent signaling component that mediates a variety of actions of nitric oxide ( NO). Here we describe the mechanism of inactivation of Akt/protein kinase B ( PKB) in NO donor-treated cells and diabetic ( db/db) mice. NO donors induced S-nitrosylation and inactivation of Akt/PKB in vitro and in intact cells. The inhibitory effects of NO donor were independent of phosphatidylinositol 3-kinase and cGMP. In contrast, the concomitant presence of oxidative stress accelerated S-nitrosylation and inactivation of Akt/PKB. In vitro denitrosylation with reducing agent reactivated recombinant and cellular Akt/PKB from NO donortreated cells. Mutated Akt1/PKBalpha( C224S), in which cysteine 224 was substituted by serine, was resistant to NO donor-induced S-nitrosylation and inactivation, indicating that cysteine 224 is a major S-nitrosylation acceptor site. In addition, S-nitrosylation of Akt/PKB was increased in skeletal muscle of diabetic ( db/db) mice compared with wild-type mice. These data suggest that S-nitrosylation-mediated inactivation may contribute to the pathogenesis of iNOS- and/or oxidative stress-involved insulin resistance.
引用
收藏
页码:7511 / 7518
页数:8
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