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钙蛋白酶系统调节肌肉质量和葡萄糖转运蛋白GLUT4的周转。

Calpain system regulates muscle mass and glucose transporter GLUT4 turnover.

作者信息

Otani Kenichi, Han Dong-Ho, Ford Eric L, Garcia-Roves Pablo M, Ye Honggang, Horikawa Yukio, Bell Graeme I, Holloszy John O, Polonsky Kenneth S

机构信息

Department of Medicine, Washington University School of Medicine, 660 S. Euclid Avenue, St. Louis, MO 63110, USA.

出版信息

J Biol Chem. 2004 May 14;279(20):20915-20. doi: 10.1074/jbc.M400213200. Epub 2004 Mar 9.

Abstract

The experiments in this study were undertaken to determine whether inhibition of calpain activity in skeletal muscle is associated with alterations in muscle metabolism. Transgenic mice that overexpress human calpastatin, an endogenous calpain inhibitor, in skeletal muscle were produced. Compared with wild type controls, muscle calpastatin mice demonstrated normal glucose tolerance. Levels of the glucose transporter GLUT4 were increased more than 3-fold in the transgenic mice by Western blotting while mRNA levels for GLUT4 and myocyte enhancer factors, MEF 2A and MEF 2D, protein levels were decreased. We found that GLUT4 can be degraded by calpain-2, suggesting that diminished degradation is responsible for the increase in muscle GLUT4 in the calpastatin transgenic mice. Despite the increase in GLUT4, glucose transport into isolated muscles from transgenic mice was not increased in response to insulin. The expression of protein kinase B was decreased by approximately 60% in calpastatin transgenic muscle. This decrease could play a role in accounting for the insulin resistance relative to GLUT4 content of calpastatin transgenic muscle. The muscle weights of transgenic animals were substantially increased compared with controls. These results are consistent with the conclusion that calpain-mediated pathways play an important role in the regulation of GLUT4 degradation in muscle and in the regulation of muscle mass. Inhibition of calpain activity in muscle by overexpression of calpastatin is associated with an increase in GLUT4 protein without a proportional increase in insulin-stimulated glucose transport. These findings provide evidence for a physiological role for calpains in the regulation of muscle glucose metabolism and muscle mass.

摘要

本研究进行了多项实验,以确定骨骼肌中钙蛋白酶活性的抑制是否与肌肉代谢的改变有关。制备了在骨骼肌中过表达人钙蛋白酶抑制蛋白(一种内源性钙蛋白酶抑制剂)的转基因小鼠。与野生型对照相比,肌肉钙蛋白酶抑制蛋白小鼠表现出正常的葡萄糖耐量。通过蛋白质印迹法检测发现,转基因小鼠中葡萄糖转运蛋白4(GLUT4)的水平增加了3倍多,而GLUT4以及肌细胞增强因子MEF 2A和MEF 2D的mRNA水平和蛋白质水平均下降。我们发现GLUT4可被钙蛋白酶-2降解,这表明降解减少是钙蛋白酶抑制蛋白转基因小鼠肌肉中GLUT4增加的原因。尽管GLUT4增加,但转基因小鼠分离肌肉中对胰岛素的葡萄糖转运并未增加。钙蛋白酶抑制蛋白转基因肌肉中蛋白激酶B的表达下降了约60%。这种下降可能是钙蛋白酶抑制蛋白转基因肌肉相对于GLUT4含量出现胰岛素抵抗的原因之一。与对照相比,转基因动物的肌肉重量大幅增加。这些结果与以下结论一致:钙蛋白酶介导的途径在肌肉中GLUT4降解的调节以及肌肉质量的调节中起重要作用。通过过表达钙蛋白酶抑制蛋白来抑制肌肉中的钙蛋白酶活性,与GLUT4蛋白增加但胰岛素刺激的葡萄糖转运没有相应增加有关。这些发现为钙蛋白酶在调节肌肉葡萄糖代谢和肌肉质量方面的生理作用提供了证据。

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