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电刺激使肌肉中的乙酰辅酶A羧化酶失活,并增加AMP激活的蛋白激酶。

Electrical stimulation inactivates muscle acetyl-CoA carboxylase and increases AMP-activated protein kinase.

作者信息

Hutber C A, Hardie D G, Winder W W

机构信息

Zoology Department, Brigham Young University, Provo, Utah 84602, USA.

出版信息

Am J Physiol. 1997 Feb;272(2 Pt 1):E262-6. doi: 10.1152/ajpendo.1997.272.2.E262.

Abstract

Muscle malonyl-CoA decreases during exercise or electrical stimulation, the exercise-induced decline being accompanied by changes in the kinetic properties [maximal velocity (Vmax), activation constant (Ka), and citrate concentration required to produce 50% Vmax (K0.5)] of acetyl-CoAcarboxylase (ACC) and by an increase in the AMP-activated protein kinase activity (AMPK). This study was designed to ascertain whether the exercise-induced changes are contraction mediated and, if so, to follow the time course of these changes. The left sciatic nerve of rats was stimulated at 1 Hz for 0, 2, 5, 10, 20, or 30 min, and the gastrocnemius-plantaris muscle group was then excised, frozen in liquid nitrogen, and later analyzed for malonyl-CoA and other metabolites. ACC and AMPK activities were quantitated in ammonium sulfate precipitates from homogenates prepared from the frozen muscles. The Vmax and Ka of ACC for citrate decreased and increased, respectively, over the first 10 min of stimulation, but significantly increased AMPK activity was not observed until 10 to 20 min of stimulation (P < 0.05). Stimulation increased estimated free AMP (P < 0.05). Thus exercise-induced changes in functional properties of ACC appear to be contraction mediated and are accompanied by increased AMPK activity and an increase in the estimated free AMP.

摘要

运动或电刺激期间肌肉丙二酰辅酶A会减少,运动诱导的下降伴随着乙酰辅酶A羧化酶(ACC)动力学特性[最大速度(Vmax)、激活常数(Ka)以及产生50%Vmax所需的柠檬酸盐浓度(K0.5)]的变化,同时伴随着AMP激活的蛋白激酶活性(AMPK)增加。本研究旨在确定运动诱导的变化是否由收缩介导,如果是,则追踪这些变化的时间进程。以1Hz频率刺激大鼠左侧坐骨神经0、2、5、10、20或30分钟,然后切除腓肠肌-比目鱼肌群,在液氮中冷冻,随后分析丙二酰辅酶A和其他代谢物。从冷冻肌肉制备的匀浆中,通过硫酸铵沉淀定量ACC和AMPK活性。在刺激的前10分钟内,ACC对柠檬酸盐的Vmax下降,Ka增加,但直到刺激10至20分钟时才观察到显著增加的AMPK活性(P<0.05)。刺激使估计的游离AMP增加(P<0.05)。因此,运动诱导的ACC功能特性变化似乎由收缩介导,并伴随着AMPK活性增加和估计的游离AMP增加。

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