国家留学基金委资助项目(CSC3034)和四川省科技厅应用基础资助项目(07ZY029-097).
This work was supported by grants from China Scholar Council(CSC3034) and Sichuan Scientific and Technology Bureau (07ZY029-097).
钙/钙调素依赖性蛋白激酶(calcium-calmodulin dependent protein kinase, CaMK)和腺苷酸活化蛋白激酶(AMP-activated protein kinase, AMPK)所介导的信号通路均能调节运动诱导的骨骼肌细胞葡萄糖转运蛋白4(glucose transporter 4, GLUT4)基因表达,但不清楚这两条通路的相互关系.运用咖啡因(Caffeine)和5-氨基咪唑-4-甲酰胺核糖核苷酸(AICAR)能模拟肌肉收缩信号并分别激活CaMK和AMPK,首次观察由Caffeine和AICAR引起的GLUT4基因表达过程中这两条通路的内在联系.原代培养肌细胞被分为对照、AICAR、Caffeine、AICAR/Caffeine、Caffeine+Compound C、AICAR/Caffeine+Compound C、AICAR+KN93、AICAR/Caffeine+KN93组.实验显示,AICAR和Caffeine能分别上调GLUT4 mRNA约2倍和3倍(P < 0.05),AMPK抑制剂Compound C能够明显减少由Caffeine 引起的GLUT4 mRNA的增长(P < 0.05),也能够明显降低由AICAR/Caffeine复合刺激引起的GLUT4 mRNA的表达(P < 0.05),与此一致的是,Caffeine能引起肌细胞AMPKα1蛋白磷酸化增加(P < 0.05),但不影响AMPKα2的磷酸化,Compound C能够抑制由Caffeine引起的AMPKα1蛋白磷酸化(P < 0.05).相反CaMK特异的抑制剂KN93能完全抑制由Caffeine引起的GLUT4 mRNA增长,但KN93却不能交叉抑制由AICAR所诱导的GLUT4 mRNA的增长(P < 0.05),也不能阻止由AICAR/Caffeine复合刺激所引起的GLUT4 mRNA的表达(P < 0.05).上述结果提示,CaMK和AMPK在调节肌细胞GLUT4基因中并不是完全相互独立的,而是彼此密切联系共同作用,AMPK可能位于CaMK途径的下游来调节收缩肌细胞GLUT4 mRNA的表达.
Glucose transporter 4 (GLUT4), a major contributor to glucose transport in skeletal muscle, is closely related to diabetic treatment. Exercise regulates apparently GLUT4 gene expression which produces many beneficial metabolic adaptations for diabetic patients. Study has shown that both AMPK (AMP-activated protein kinase) and CaMK (calcium-calmodulin dependent protein kinase) signaling pathways are involved in regulation of exercise-induced GLUT4 gene expression in skeletal muscles, but the relationship between these two signaling pathways in regulating the GLUT4 gene is unclear. The purpose of the following study was to investigate the relationship of these two pathways in Caffeine- and AICAR-stimulated skeletal muscle cells GLUT4 gene expression. Muscle contractile activity results in increases in both cytosolic Ca2+ and AMPK activity. To mimic this response, primary cultured rat skeletal muscle cells were treated with Caffeine to raise cytosolic Ca2+ and with AICAR to activate AMPK. The muscle cells were divided into different groups (Control, AICAR, Caffeine, AICAR/Caffeine, Caffeine+Compound C, AICAR/Caffeine+Compound C, AICAR+KN93, AICAR/Caffeine+KN93), which were used for experiments of stimulation by AICAR and Caffeine, inhibition by AMPK inhibitor, Compound C and CaMK inhibitor, KN93 respectively. The results showed that both AICAR and Caffeine induced about 2- and 3-fold increases respectively (P < 0.05, AICAR vs. Control; P < 0.05, Caffeine vs. Control) in GLUT4 mRNA in muscle cells, but the effect of GLUT4 mRNA induced by the combined stimulation of raising cytosolic Ca2+ and activating AMPK was not additive. Moreover, the Compound C, an AMPK inhibitor, decreased the Caffeine-induced increases in GLUT4 mRNA (P < 0.05, Caffeine+Compound C vs. Caffeine), and also attenuated an increase in GLUT4 mRNA induced by the combined stimulation of AICAR and Caffeine (P < 0.05, AICAR/Caffeine+Compound C vs. AICAR/Caffeine). Similarly, the Caffeine induced an increase in α1-AMPK phosphorylation (P < 0.05, Caffeine vs. Control) and furthermore the Compound C reduced apparently such an increase (P < 0.05, Caffeine+Compound C vs. Caffeine); however, KN93, a CaMK inhibitor, was completely able to inhibit the Caffeine-induced increase in GLUT4 mRNA, but failed to inhibit the AICAR-induced 2-fold increases in GLUT4 mRNA (P < 0.05, AICAR+KN93 vs. Control) and also failed to block an increase in GLUT4 mRNA induced by the combined stimulation of AICAR and Caffeine (P < 0.05, AICAR+Caffeine+KN93 vs. Control). These results demonstrate that the CaMK and AMPK signaling pathways are not complete independent, but are cooperative in the regulation of Caffeine-induced GLUT4 gene expression in cultured skeletal muscle cells. Collectively, based on our results and the other results this paper suggests that the GLUT4 gene expression in contracting skeletal muscle cells may be regulated through a CaMK-AMPK signaling pathway.
李良刚,陈槐卿. CaMK和AMPK信号通路能共调收缩信号诱导的骨骼肌细胞GLUT4基因转录[J].生物化学与生物物理进展,2009,36(4):471-479
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