Yoshioka Kiyoshi, Fujita Ryo, Seko Daiki, Suematsu Takashi, Miura Shinji, Ono Yusuke
Department of Muscle Development and Regeneration, Institute of Molecular Embryology and Genetics, Kumamoto University, Kumamoto, Japan.
Nagasaki University Graduate School of Biomedical Sciences, Nagasaki, Japan.
Front Cell Dev Biol. 2019 Dec 10;7:330. doi: 10.3389/fcell.2019.00330. eCollection 2019.
Maintaining skeletal muscle mitochondrial quality is important not only for muscle activity but also for systemic metabolism. Exercise has long been recognized to have a positive impact on muscle mitochondrial quality. Although exercise triggers various changes in the mitochondrial dynamics, its molecular basis remains to be elucidated. We have previously reported that inactivation of the muscle-specific protein, zinc finger MYND domain-containing protein 17 (Zmynd17), results in mitochondrial abnormalities. To investigate the link between Zmynd17 activity and exercise-induced mitochondrial maintenance, we observed the effect of consecutive exercise on the mitochondrial quality in Zmynd17-deficient muscles. Zmynd17-deficient mice displayed abnormal mitochondrial morphology in limb muscles, which remarkably improved upon voluntary exercise. Interestingly, morphological abnormalities in mitochondria were even more apparent when PGC1α, a regulator of exercise-induced mitochondrial biogenesis, was overexpressed in Zmynd17-KO limb muscle. These abnormalities were also ameliorated by voluntary exercise. Our results show that neither the effect of consecutive exercise on mitochondrial quality nor PGC1α-induced mitochondrial biogenesis are mediated through Zmynd17 activity, thereby suggesting the existence of a complex mechanism of mitochondrial quality control in muscles.
维持骨骼肌线粒体质量不仅对肌肉活动很重要,对全身代谢也很重要。长期以来,运动被认为对肌肉线粒体质量有积极影响。尽管运动引发了线粒体动力学的各种变化,但其分子基础仍有待阐明。我们之前报道过,肌肉特异性蛋白含锌指MYND结构域蛋白17(Zmynd17)的失活会导致线粒体异常。为了研究Zmynd17活性与运动诱导的线粒体维持之间的联系,我们观察了连续运动对Zmynd17缺陷型肌肉中线粒体质量的影响。Zmynd17缺陷型小鼠的肢体肌肉中线粒体形态异常,而自愿运动后这种异常显著改善。有趣的是,当运动诱导的线粒体生物发生的调节因子PGC1α在Zmynd17基因敲除的肢体肌肉中过表达时,线粒体的形态异常更加明显。这些异常也通过自愿运动得到改善。我们的结果表明,连续运动对线粒体质量的影响以及PGC1α诱导的线粒体生物发生都不是通过Zmynd17活性介导的,从而表明肌肉中线粒体质量控制存在复杂机制。