Analysis of thermal injury-induced insulin resistance in rodents - Implication of postreceptor mechanisms

被引:76
作者
Ikezu, T
Okamoto, T
Yonezawa, K
Tompkins, RG
Martyn, JAJ
机构
[1] HARVARD UNIV,MASSACHUSETTS GEN HOSP,SCH MED,SHRINERS BURNS INST,DEPT ANESTHESIOL,BOSTON,MA 02114
[2] HARVARD UNIV,MASSACHUSETTS GEN HOSP,SCH MED,SHRINERS BURNS INST,DEPT MED,BOSTON,MA 02114
[3] HARVARD UNIV,MASSACHUSETTS GEN HOSP,SCH MED,SHRINERS BURNS INST,DEPT SURG,BOSTON,MA 02114
[4] KOBE UNIV,BIOSIGNAL RES CTR,KOBE,HYOGO 657,JAPAN
关键词
D O I
10.1074/jbc.272.40.25289
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
Burn injury is associated with insulin resistance. The molecular basis of this resistance was investigated by examining insulin receptor signaling in rats after thermal injury. The impaired insulin-stimulated transport of [H-3]2-deoxyglucose into soleus muscle strips confirmed the insulin resistance following burns. In vivo insulin-stimulated phosphoinositide 3-kinase activity, pivotal, in translocation of GLUT4, was decreased in burns when assessed by its insulin receptor substrate-1 (IRS-1)-associated activity. Insulin-induced tyrosine kinase activity of insulin receptor (IR) and tyrosine phosphorylation of IRS-I were also attenuated, Immunoprecipitated IR, however, appeared to have normal insulin-responsive kinase activity. Finally, immunoprecipitated IRS-I was tested for its effect on partially purified recombinant IR and was found to inhibit its kinase activity. This inhibitory effect of IRS-1 was abolished by prior treatment of IRS-1 with alkaline phosphatase, indicating that burn injury-related hyperphosphorylation of IRS-1 is similar to that observed in TNF alpha-induced inhibition of LR signaling All of these changes were observed in the absence of quantitative changes in IR, IRS-1, and phosphoinositide 3-kinase. Alterations in postreceptor insulin signaling, therefore, may be responsible for the insulin resistance after thermal injury.
引用
收藏
页码:25289 / 25295
页数:7
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