Yang Jing, Holman Geoffrey D
Department of Biology and Biochemistry, University of Bath, Bath BA2 7AY, United Kingdom.
J Biol Chem. 2005 Feb 11;280(6):4070-8. doi: 10.1074/jbc.M410213200. Epub 2004 Nov 22.
Stimulations of glucose transport produced by insulin action, contraction, or through a change in cell energy status are mediated by separate signaling pathways. These are the wortmannin-sensitive phosphatidylinositol 3-kinase pathway leading to the intermediate Akt and the wortmannin-insensitive AMP-activated protein kinase (AMPK) pathway. Electrical stimulation of cardiomyocytes produced a rapid, insulin-like, wortmannin-sensitive stimulation of glucose transport activity, but this occurred without extensive activation of Akt. Although AMPK phosphorylation was increased by contraction, this response was not wortmannin-inhibitable and consequently did not correlate with the wortmannin sensitivity of the transport stimulation. Oxidative metabolism stress due to hypoxia or treatment with oligomycin led to increased AMPK activity with a corresponding increase in glucose transport activity. We show here that these separate signaling pathways converge on GLUT4 trafficking at separate steps. The rate of exocytosis of GLUT4 was rapidly stimulated by insulin, but insulin treatment did not alter the endocytosis rate. Like insulin stimulation, electrical stimulation of contraction led to a stimulation of GLUT4 exocytosis without any marked change in endocytosis. By contrast, after oxidative metabolism stress, no stimulation of GLUT4 exocytosis occurred; instead, this treatment led to a reduction in GLUT4 endocytosis.
胰岛素作用、收缩或细胞能量状态变化所产生的葡萄糖转运刺激,是由不同的信号通路介导的。这些通路包括导致中间产物Akt的渥曼青霉素敏感的磷脂酰肌醇3激酶通路,以及渥曼青霉素不敏感的AMP激活蛋白激酶(AMPK)通路。对心肌细胞的电刺激产生了一种快速的、类似胰岛素的、渥曼青霉素敏感的葡萄糖转运活性刺激,但这一过程并未伴随Akt的广泛激活。虽然收缩会增加AMPK的磷酸化,但这种反应不受渥曼青霉素抑制,因此与转运刺激的渥曼青霉素敏感性无关。缺氧或用寡霉素处理导致的氧化代谢应激会导致AMPK活性增加,同时葡萄糖转运活性相应增加。我们在此表明,这些不同的信号通路在不同步骤汇聚于GLUT4的转运过程。胰岛素能迅速刺激GLUT4的胞吐速率,但胰岛素处理并未改变内吞速率。与胰岛素刺激一样,收缩的电刺激会导致GLUT4胞吐的刺激,而内吞没有任何明显变化。相比之下,氧化代谢应激后并未发生GLUT4胞吐的刺激;相反,这种处理导致GLUT4内吞减少。