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首页> 外文期刊>Molecular Metabolism >Perm1 regulates CaMKII activation and shapes skeletal muscle responses to endurance exercise training
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Perm1 regulates CaMKII activation and shapes skeletal muscle responses to endurance exercise training

机译:Perm1调节CaMKII活化并塑造骨骼肌对耐力运动训练的反应

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Objective Endurance exercise training remodels skeletal muscle, leading to increased mitochondrial content and oxidative capacity. How exercise entrains skeletal muscle signaling pathways to induce adaptive responses remains unclear. In past studies, we identified Perm1 (PGC-1 and ERR induced regulator, muscle 1) as an exercise-induced gene and showed that Perm1 overexpression elicits similar muscle adaptations as endurance exercise training. The mechanism of action and the role of Perm1 in exercise-induced responses are not known. In this study, we aimed to determine the pathway by which Perm1 acts as well as the importance of Perm1 for acute and long-term responses to exercise. Methods We performed immunoprecipitation and mass spectrometry to identify Perm1 associated proteins, and validated Perm1 interactions with the Casup2+/sup/calmodulin-dependent protein kinase II (CaMKII). We also knocked down Perm1 expression in gastrocnemius muscles of mice via AAV-mediated delivery of shRNA and assessed the impact of reduced Perm1 expression on both acute molecular responses to a single treadmill exercise bout and long-term adaptive responses to four weeks of voluntary wheel running training. Finally, we asked whether Perm1 levels are modulated by diet or diseases affecting skeletal muscle function. Results We show that Perm1 associates with skeletal muscle CaMKII and promotes CaMKII activation. In response to an acute exercise bout, muscles with a knock down of Perm1 showed defects in the activation of CaMKII and p38 MAPK and blunted induction of regulators of oxidative metabolism. Following four weeks of voluntary training, Perm1 knockdown muscles had attenuated mitochondrial biogenesis. Finally, we found that Perm1 expression is reduced in diet-induced obese mice and in muscular dystrophy patients and mouse models. Conclusions Our findings identify Perm1 as a muscle-specific regulator of exercise-induced signaling and Perm1 levels as tuners of the skeletal muscle response to exercise. The decreased Perm1 levels in states of obesity or muscle disease suggest that Perm1 may link pathological states to inefficient exercise responses.
机译:目的耐力运动训练可重塑骨骼肌,从而增加线粒体含量和氧化能力。运动如何带动骨骼肌信号传导途径诱导适应性反应尚不清楚。在过去的研究中,我们将Perm1(PGC-1和ERR诱导的调节物,肌肉1)鉴定为运动诱导基因,并表明Perm1的过表达引起与耐力运动训练相似的肌肉适应。运动机制和Perm1在运动诱发的反应中的作用尚不清楚。在这项研究中,我们旨在确定Perm1发挥作用的途径以及Perm1对运动的急性和长期反应的重要性。方法我们通过免疫沉淀和质谱法鉴定Perm1相关蛋白,并验证了Perm1与Ca 2 + /钙调蛋白依赖性蛋白激酶II(CaMKII)的相互作用。我们还通过AAV介导的shRNA敲低了小鼠腓肠肌中Perm1的表达,并评估了Perm1减少的表达对单次跑步机运动的急性分子反应和对自愿行走4周的长期适应性反应的影响训练。最后,我们询问Perm1水平是否受饮食或影响骨骼肌功能的疾病调节。结果我们显示,Perm1与骨骼肌CaMKII相关并促进CaMKII激活。对急性运动的反应是,击倒Perm1的肌肉在CaMKII和p38 MAPK的激活以及氧化代谢调节剂的诱导减弱方面表现出缺陷。经过四周的自愿训练,Perm1组合式肌肉减弱了线粒体的生物发生。最后,我们发现在饮食诱导的肥胖小鼠以及肌肉营养不良的患者和小鼠模型中,Perm1表达降低。结论我们的发现确定Perm1是运动诱导信号的肌肉特异性调节剂,Perm1水平是运动对骨骼肌反应的调节剂。肥胖或肌肉疾病状态下Perm1水平的降低表明Perm1可能将病理状态与低效的运动反应联系起来。

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