首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >Response of mitochondrial fusion and fission protein gene expression to exercise in rat skeletal muscle.
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Response of mitochondrial fusion and fission protein gene expression to exercise in rat skeletal muscle.

机译:线粒体融合和裂变蛋白基因表达对大鼠骨骼肌运动的反应。

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The purpose of this study was to investigate the changes in the gene expression of Mitofusion (Mfn) 1 and 2 and Fission 1 (Fis1) and mitochondrial energy metabolism in response to altered energy demand during prolonged exercise in rat skeletal muscle. Male Sprague-Dawley rats were subjected to an acute bout of treadmill running at various durations and killed immediately or during recovery. Mfn1/2 and Fis1 mRNA and protein contents, reactive oxygen species (ROS) generation, state 3 and state 4 respiration rates, trans-innermembrane potential and ATP synthase activity were measured in isolated muscle mitochondria. We found that (1) Mfn1/2 mRNA contents were progressively decreased during 150 min of exercise, along with decreased Mfn 1 protein levels. Fis1 mRNA and protein contents showed significant increases after 120-150 min of exercise. These changes persisted through the recovery period up to 24 h. (2) Mitochondrial ROS generation and state 4 respiration showed progressive increases up to 120 min, but dropped at 150 min of exercise. (3) State 3 respiration rate and respiratory control index were unchanged initially but decreased at 150 and 120 min of exercise, respectively, whereas ATP synthase activity was elevated at 45 min and returned to resting level thereafter. Our data suggested that the gene expression of mitochondrial fusion and fission proteins in skeletal muscle can respond rapidly to increased metabolic demand during prolonged exercise, which could significantly affect the efficiency of oxidative phosphorylation.
机译:这项研究的目的是调查大鼠骨骼肌长时间运动过程中,线粒体融合(Mfn)1和2和裂变1(Fis1)和线粒体能量代谢的基因表达对能量需求变化的响应。将雄性Sprague-Dawley大鼠在不同时间进行跑步机急性发作,并立即或在恢复过程中将其杀死。 Mfn1 / 2和Fis1 mRNA和蛋白质含量,活性氧(ROS)生成,状态3和状态4呼吸速率,跨内膜电位和ATP合酶活性被测量孤立的肌肉线粒体中。我们发现(1)在运动150分钟期间,Mfn1 / 2 mRNA含量逐渐降低,同时Mfn-1蛋白水平降低。运动120-150分钟后,Fis1 mRNA和蛋白质含量显着增加。这些变化一直持续到恢复期长达24小时。 (2)线粒体ROS的产生和状态4的呼吸在直至120分钟时逐渐增加,但在运动150分钟时下降。 (3)状态3的呼吸速率和呼吸控制指数最初没有变化,但分别在运动150分钟和120分钟时下降,而ATP合酶活性在45分钟时升高,此后恢复到静息状态。我们的数据表明,骨骼肌中线粒体融合和裂变蛋白的基因表达可以在长时间运动中快速响应增加的代谢需求,这可能会显着影响氧化磷酸化的效率。

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