首页> 外文期刊>American Journal of Physiology >Effect of chronic contractile activity on SS and IMF mitochondrial apoptotic susceptibility in skeletal muscle.
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Effect of chronic contractile activity on SS and IMF mitochondrial apoptotic susceptibility in skeletal muscle.

机译:慢性收缩活动对骨骼肌SS和IMF线粒体凋亡敏感性的影响。

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摘要

Chronic contractile activity of skeletal muscle induces an increase in mitochondria located in proximity to the sarcolemma [subsarcolemmal (SS)] and in mitochondria interspersed between the myofibrils [intermyofibrillar (IMF)]. These are energetically favorable metabolic adaptations, but because mitochondria are also involved in apoptosis, we investigated the effect of chronic contractile activity on mitochondrially mediated apoptotic signaling in muscle. We hypothesized that chronic contractile activity would provide protection against mitochondrially mediated apoptosis despite an elevation in the expression of proapoptotic proteins. To induce mitochondrial biogenesis, we chronically stimulated (10 Hz; 3 h/day) rat muscle for 7 days. Chronic contractile activity did not alter the Bax/Bcl-2 ratio, an index of apoptotic susceptibility, and did not affect manganese superoxide dismutase levels. However, contractile activity increased antiapoptotic 70-kDa heat shock protein and apoptosis repressor with a caspase recruitment domain by 1.3- and 1.4-fold (P<0.05), respectively. Contractile activity elevated SS mitochondrial reactive oxygen species (ROS) production 1.4- and 1.9-fold (P<0.05) during states IV and III respiration, respectively, whereas IMF mitochondrial state IV ROS production was suppressed by 28% (P<0.05) and was unaffected during state III respiration. Following stimulation, exogenous ROS treatment produced less cytochrome c release (25-40%) from SS and IMF mitochondria, and also reduced apoptosis-inducing factor release (approximately 30%) from IMF mitochondria, despite higher inherent cytochrome c and apoptosis-inducing factor expression. Chronic contractile activity did not alter mitochondrial permeability transition pore (mtPTP) components in either subfraction. However, SS mitochondria exhibited a significant increase in the time to Vmax of mtPTP opening. Thus, chronic contractile activity induces predominantly antiapoptotic adaptations in both mitochondrial subfractions. Our data suggest the possibility that chronic contractile activity can exert a protective effect on mitochondrially mediated apoptosis in muscle.
机译:骨骼肌的慢性收缩活动引起位于肌膜附近的线粒体[肌膜下层(SS)]和散布在肌原纤维之间的线粒体[肌原纤维间体(IMF)]的增加。这些是能量上有利的代谢适应,但由于线粒体也参与细胞凋亡,因此我们研究了慢性收缩活性对肌肉中线粒体介导的凋亡信号的影响。我们假设尽管促凋亡蛋白的表达升高,但慢性收缩活性将提供针对线粒体介导的凋亡的保护作用。为了诱导线粒体生物发生,我们长期刺激(10 Hz; 3小时/天)大鼠肌肉7天。慢性收缩活动不会改变Bax / Bcl-2比率(凋亡敏感性的指标),并且不会影响锰超氧化物歧化酶水平。然而,收缩活性使具有caspase募集域的抗凋亡70-kDa热休克蛋白和凋亡抑制因子分别增加了1.3倍和1.4倍(P <0.05)。收缩活性使状态IV和III呼吸期间SS线粒体活性氧(ROS)产生分别增加了1.4倍和1.9倍(P <0.05),而IMF线粒体IV状态ROS产生被抑制了28%(P <0.05)和在III型呼吸期间未受影响。刺激后,尽管固有的细胞色素c和凋亡诱导因子更高,但外源性ROS处理从SS和IMF线粒体产生的细胞色素c释放较少(25-40%),并且还减少了从IMF线粒体释放的细胞凋亡诱导因子(约30%)。表达。慢性收缩活动不会改变任何一个亚组中的线粒体通透性转换孔(mtPTP)组件。但是,SS线粒体显示到mtPTP开放至Vmax的时间显着增加。因此,慢性收缩活性主要在两个线粒体亚组分中诱导抗凋亡适应性。我们的数据表明,慢性收缩活动可能对线粒体介导的细胞凋亡发挥保护作用。

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