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首页> 外文期刊>American Journal of Physiology >Critical role of 5'-AMP-activated protein kinase in the stimulation of glucose transport in response to inhibition of oxidative phosphorylation.
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Critical role of 5'-AMP-activated protein kinase in the stimulation of glucose transport in response to inhibition of oxidative phosphorylation.

机译:5'-AMP激活的蛋白激酶在响应于抑制氧化磷酸化而刺激葡萄糖转运中的关键作用。

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5'-AMP-activated protein kinase (AMPK) functions as an energy sensor to provide metabolic adaptation under conditions of ATP depletion, such as hypoxia and inhibition of oxidative phosphorylation. Whether activation of AMPK is critical for stimulation of glucose transport in response to inhibition of oxidative phosphorylation is unknown. Here we found that treatment of Glut1-expressing Clone 9 cells with sodium azide (5 mM for 2 h) or the AMPK activator 5'-aminoimidazole-4-carboxamide-1-beta-d-ribofuranoside (AICAR, 2 mM for 2 h) stimulated the rate of glucose transport by two- to fourfold. Use of small interference RNA (siRNA) directed against AMPKalpha(1) or AMPKalpha(1) + AMPKalpha(2) (total AMPKalpha) resulted in a significant inhibition of the glucose transport response and the content of phosphorylated AMPKalpha(1) + phosphorylated AMPKalpha(2) (total p-AMPKalpha) and phosphorylated acetyl-CoA carboxylase (p-ACC) in response to azide. Transfection with siRNA directed against AMPKalpha(2) did not affect the glucose transport response. The efficacy of transfection with siRNAs in reducing AMPK content was confirmed by Western blotting. Incubation of cells with compound C, an inhibitor of AMPK, abrogated the glucose transport response and abolished the increase in total p-AMPK in azide-treated or hypoxia-exposed cells. Simultaneous exposure to azide and AICAR did not augment the rate of transport in response to AICAR alone. There was no evidence of coimmunoprecipitation of total p-AMPKalpha with Glut1. However, LKB1 was associated with total p-AMPKalpha. We conclude that activation of AMPK plays both a sufficient and a necessary role in the stimulation of glucose transport in response to inhibition of oxidative phosphorylation.
机译:5'-AMP激活的蛋白激酶(AMPK)充当能量传感器,可在ATP耗竭的条件下提供代谢适应,例如缺氧和抑制氧化磷酸化。尚不清楚AMPK的激活是否对刺激氧化磷酸化的抑制刺激葡萄糖转运至关重要。在这里,我们发现用叠氮化钠(5 mM持续2 h)或AMPK激活剂5'-氨基咪唑-4-羧酰胺-1-β-d-呋喃呋喃糖苷(AICAR,2 mM持续2 h)处理表达Glut1的Clone 9细胞)将葡萄糖的转运速度提高了2到4倍。使用针对AMPKalpha(1)或AMPKalpha(1)+ AMPKalpha(2)(总AMPKalpha)的小干扰RNA(siRNA)可显着抑制葡萄糖转运反应以及磷酸化AMPKalpha(1)+磷酸化AMPKalpha的含量(2)(总p-AMPKalpha)和磷酸化的乙酰辅酶A羧化酶(p-ACC)对叠氮化物的响应。用针对AMPKalpha(2)的siRNA转染不影响葡萄糖转运反应。 Western印迹证实了转染siRNA降低AMPK含量的功效。用化合物C(AMPK的抑制剂)孵育细胞,可以消除葡萄糖转运反应,并消除叠氮化物处理或缺氧暴露的细胞中总p-AMPK的增加。同时暴露于叠氮化物和AICAR并不能提高仅对AICAR的反应速度。没有证据表明总p-AMPKalpha与Glut1发生了免疫共沉淀。但是,LKB1与总p-AMPKalpha相关。我们得出结论,响应抑制氧化磷酸化,AMPK的激活在刺激葡萄糖转运中起着充分和必要的作用。

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