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首页> 外文期刊>American Journal of Physiology >Activation of cardiac AMP-activated protein kinase by LKB1 expression or chemical hypoxia is blunted by increased Akt activity.
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Activation of cardiac AMP-activated protein kinase by LKB1 expression or chemical hypoxia is blunted by increased Akt activity.

机译:通过增加Akt活性,通过LKB1表达或化学性缺氧激活心脏AMP激活的蛋白激酶。

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AMP-activated protein kinase (AMPK) plays a major role in the regulation of cardiac energy substrate utilization and can be negatively regulated by Akt activation in the heart. It has recently been shown that Akt directly phosphorylates AMPKalpha(1)/alpha(2) on Ser(485/491) in vitro and prevents the AMPK kinase (AMPKK) LKB1 from phosphorylating AMPKalpha at its primary activation site, Thr(172) (S Horman, D Vertommen, R Heath, D Neumann, V Mouton, A Woods, U Schlattner, T Wallimann, D Carling, L Hue, and MH Rider. J Biol Chem 281: 5335-5340, 2006). To determine whether this is also the case in the cardiac myocyte, neonatal rat cardiac myocytes (NRCM) were infected with a recombinant adenovirus expressing a constitutively active mutant of Akt1 (myrAkt1) and then with or without adenoviruses expressing the active LKB1 complex. Expression of myrAkt1 blunted LKB1-induced phosphorylation of AMPKalpha at Thr(172), which resulted in a dramatic decrease in phosphorylation of AMPK's target, acetyl CoA-carboxylase. This decrease in AMPK activity was associated with prior Akt1-dependent phosphorylation of AMPKalpha(1)/alpha(2) at Ser(485/491). To investigate whether Akt1 activation was also able to prevent other AMPKKs from phosphorylating AMPKalpha, we subjected NRCM to chemical hypoxia and noted a marked increase in phosphorylation of AMPKalpha at Thr(172), despite no change in LKB1 activity. NRCM expressing myrAkt1 demonstrated increased phosphorylation of AMPKalpha(1)/alpha(2) at Ser(485/491) and a complete inhibition of chemical hypoxia-induced phosphorylation of AMPKalpha at Thr(172). Taken together, our data show that activation of Akt1 is able to prevent activation of cardiac AMPK by LKB1 and at least one other AMPKK, likely by prior phosphorylation of AMPKalpha(1)/alpha(2) at Ser(485/491).
机译:AMP激活的蛋白激酶(AMPK)在调节心脏能量底物的利用中起主要作用,并且可以通过心脏中的Akt激活来负调节。最近显示,Akt在体外直接磷酸化Ser(485/491)上的AMPKalpha(1)/ alpha(2)并阻止AMPK激酶(AMPKK)LKB1在其主要激活位点Thr(172)上磷酸化AMPKalpha( S Horman,D Vertommen,R Heath,D Neumann,V Mouton,A Woods,U Schlattner,T Wallimann,D Carling,L Hue和MH Rider.J Biol Chem 281:5335-5340,2006)。为了确定在心肌细胞中是否也是这种情况,将新生大鼠心肌细胞(NRCM)用表达Akt1组成型活性突变体的重组腺病毒(myrAkt1)感染,然后用表达或不表达活性LKB1复合物的腺病毒感染。 myrAkt1的表达使LKB1诱导的AMPKalpha在Thr(172)处的磷酸化减弱,从而导致AMPK靶标乙酰辅酶A羧化酶的磷酸化急剧降低。 AMPK活性的这种降低与先前在Ser(485/491)的AMPKalpha(1)/ alpha(2)的依赖Akt1的磷酸化有关。为了研究Akt1激活是否还能够防止其他AMPKK磷酸化AMPKalpha,我们对NRCM进行了化学低氧处理,并注意到尽管LKB1活性没有变化,但Thr(172)处AMPKalpha的磷酸化却显着增加。表示myrAkt1的NRCM表现出在Ser(485/491)处AMPKalpha(1)/ alpha(2)的磷酸化增加,并在Thr(172)处完全抑制化学低氧诱导的AMPKalpha磷酸化。综上所述,我们的数据表明,Akt1的激活能够阻止LKB1和至少一个其他AMPKK激活心脏AMPK,这可能是由于AMPKalpha(1)/ alpha(2)在Ser(485/491)上的磷酸化所致。

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