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Expression of striated activator of rho‐signaling in human skeletal muscle following acute exercise and long‐term training

机译:急性运动和长期训练后横纹肌横纹肌激活剂在人骨骼肌中的表达

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The striated activator of rho‐signaling (STARS) protein acts as a link between external stimuli and exercise adaptation such as muscle hypertrophy. However, the acute and long‐term adaptational response of STARS is still unclear. This study aimed at investigating the acute and long‐term endurance training response on the mRNA and protein expression of STARS and its related upstream and downstream factors in human skeletal muscle. mRNA and protein levels of STARS and related factors were assessed in skeletal muscle of healthy young men and women following an acute bout of endurance exercise ( n ?=?15) or 12?weeks of one‐legged training ( n ?=?23). Muscle biopsies were obtained before (acute and long‐term), at 30?min, 2, and 6?h following acute exercise, and at 24?h following both acute exercise and long‐term training. Following acute exercise, STARS mRNA was significantly elevated 3.9‐fold at 30?min returning back to baseline 24?h after exercise. STARS protein levels were numerically but nonsignificantly increased 7.2‐fold at 24?h. No changes in STARS or ERR α mRNA or STARS protein expression were seen following long‐term training. PGC‐1 α mRNA increased 1.7‐fold following long‐term training. MRTF‐A mRNA was increased both following acute exercise and long‐term training, in contrast to SRF mRNA and protein which did not change. STARS mRNA is acutely upregulated with exercise, but there is no cumulative effect to long‐term training as seen in PGC‐1 α mRNA expression. Exercise intensity might play a role in manifestation of protein expression, suggesting a more complex regulation of STARS.
机译:纹状体纹状体激活蛋白(STARS)激活物是外部刺激与运动适应(例如肌肉肥大)之间的联系。但是,STARS的急性和长期适应性反应仍不清楚。本研究旨在研究人骨骼肌中STARS的mRNA和蛋白表达及其相关上游和下游因素的急性和长期耐力训练反应。在急性耐力运动(n = 15)或单腿训练12周(n = 23)后,对健康的年轻男性和女性的骨骼肌中STARS的mRNA和蛋白水平进行了评估。 。在急性运动之前(急性和长期),30分钟,2和6小时以及急性运动和长期训练之后的24小时(急性和长期)进行肌肉活检。急性运动后,STARS mRNA在运动30分钟后显着升高3.9倍,并在运动后24小时回到基线。在24小时时,STARS蛋白水平在数值上增加了7.2倍,但没有明显增加。长期训练后,未观察到STARS或ERRαmRNA或STARS蛋白表达的变化。长期训练后,PGC-1αmRNA增加了1.7倍。急性运动和长期训练后,MRTF-A mRNA均增加,而SRF mRNA和蛋白没有改变。锻炼会严重上调STARS mRNA的表达,但如PGC-1αmRNA的表达所示,长期训练没有累积作用。运动强度可能在蛋白质表达的表现中起作用,提示对STARS的调节更为复杂。

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