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Perm1 enhances mitochondrial biogenesis, oxidative capacity, and fatigue resistance in adult skeletal muscle

机译:Perm1增强成人骨骼肌的线粒体生物发生,氧化能力和抗疲劳性

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摘要

Skeletal muscle mitochondrial content and oxidative capacity are important determinants of muscle function and whole-body health. Mitochondrial content and function are enhanced by endurance exercise and impaired in states or diseases where muscle function is compromised, such as myopathies, muscular dystrophies, neuromuscular diseases, and age-related muscle atrophy. Hence, elucidating the mechanisms that control muscle mitochondrial content and oxidative function can provide new insights into states and diseases that affect muscle health. In past studies, we identified Perm1 (PPARGC1- and ESRR-induced regulator, muscle 1) as a gene induced by endurance exercise in skeletal muscle, and regulating mitochondrial oxidative function in cultured myotubes. The capacity of Perm1 to regulate muscle mitochondrial content and function in vivo is not yet known. In this study, we use adeno-associated viral (AAV) vectors to increase Perm1 expression in skeletal muscles of 4-wk-old mice. Compared to control vector, AAV1-Perm1 leads to significant increases in mitochondrial content and oxidative capacity (by 40-80%). Moreover, AAV1-Perm1-transduced muscles show increased capillary density and resistance to fatigue (by 33 and 31%, respectively), without prominent changes in fiber-type composition. These findings suggest that Perm1 selectively regulates mitochondrial biogenesis and oxidative function, and implicate Perm1 in muscle adaptations that also occur in response to endurance exercise.-Cho, Y., Hazen, B. C., Gandra, P. G., Ward, S. R., Schenk, S., Russell, A. P., Kralli, A. Perm1 enhances mitochondrial biogenesis, oxidative capacity, and fatigue resistance in adult skeletal muscle.
机译:骨骼肌线粒体含量和氧化能力是肌肉功能和全身健康的重要决定因素。耐力运动会增强线粒体的含量和功能,在肌肉功能受损的状态或疾病(如肌病,肌肉营养不良,神经肌肉疾病和与年龄相关的肌肉萎缩症)中受损。因此,阐明控制肌肉线粒体含量和氧化功能的机制可以为影响肌肉健康的状态和疾病提供新的见解。在过去的研究中,我们将Perm1(PPARGC1-和ESRR诱导的调节物,肌肉1)鉴定为骨骼肌耐力运动诱导的基因,并调节了培养的肌管中的线粒体氧化功能。 Perm1在体内调节肌肉线粒体含量和功能的能力尚不清楚。在这项研究中,我们使用腺相关病毒(AAV)载体来增加Perm1在4周龄小鼠骨骼肌中的表达。与对照载体相比,AAV1-Perm1导致线粒体含量和氧化能力显着增加(增加40-80%)。此外,AAV1-Perm1转导的肌肉显示出增加的毛细血管密度和抗疲劳性(分别增加33%和31%),而纤维类型组成没有明显变化。这些发现表明Perm1选择性调节线粒体的生物发生和氧化功能,并暗示Perm1参与了适应运动也发生的肌肉适应.-Cho,Y.,Hazen,BC,Gandra,PG,Ward,SR,Schenk,S。 ,Russell,AP,Kralli,A。Perm1增强成人骨骼肌的线粒体生物发生,氧化能力和抗疲劳性。

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