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Functional Mechanisms of Mitochondrial Respiratory Chain Supercomplex Assembly Factors and Their Involvement in Muscle Quality

机译:线粒体呼吸链超复杂装配因子的功能机制及其对肌肉质量的影响

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摘要

Impairment of skeletal muscle function causes disabilities in elderly people. Therefore, in an aged society, prevention and treatment of sarcopenia are important for expanding healthy life expectancy. In addition to aging, adipose tissue disfunction and inflammation also contribute to the pathogenesis of sarcopenia by causing the combined state called ‘sarcopenic obesity’. Muscle quality as well as muscle mass contributes to muscle strength and physical performance. Mitochondria in the skeletal muscles affect muscle quality by regulating the production of energy and reactive oxygen species. A certain portion of the mitochondrial respiratory chain complexes form a higher-order structure called a “supercomplex”, which plays important roles in efficient energy production, stabilization of respiratory chain complex I, and prevention of reactive oxygen species (ROS) generation. Several molecules including phospholipids, proteins, and certain chemicals are known to promote or stabilize mitochondrial respiratory chain supercomplex assembly directly or indirectly. In this article, we review the distinct mechanisms underlying the promotion or stabilization of mitochondrial respiratory chain supercomplex assembly by supercomplex assembly factors. Further, we introduce regulatory pathways of mitochondrial respiratory chain supercomplex assembly and discuss the roles of supercomplex assembly factors and regulatory pathways in skeletal muscles and adipose tissues, believing that this will lead to discovery of potential targets for prevention and treatment of muscle disorders such as sarcopenia.
机译:骨骼肌功能受损会导致老年人残疾。因此,在老年社会中,肌肉减少症的预防和治疗对于延长健康的预期寿命很重要。除衰老外,脂肪组织的功能紊乱和炎症还会通过引起称为“肌肉减少症”的合并状态,导致肌肉减少症的发病机理。肌肉质量以及肌肉质量有助于肌肉力量和身体机能。骨骼肌中的线粒体通过调节能量和活性氧的产生来影响肌肉质量。线粒体呼吸链复合物的某些部分形成了称为“超复合物”的高级结构,在高效产生能量,稳定呼吸链复合物I和防止活性氧(ROS)生成方面起着重要作用。已知包括磷脂,蛋白质和某些化学物质在内的几种分子可直接或间接促进或稳定线粒体呼吸链超复合体的组装。在这篇文章中,我们审查了由超复杂组装因子促进或稳定线粒体呼吸链超复杂组装的不同机制。此外,我们介绍了线粒体呼吸链超复合物装配的调节途径,并讨论了超复合物装配因子和调节途径在骨骼肌和脂肪组织中的作用,认为这将导致发现预防和治疗肌肉疾病(如肌肉减少症)的潜在靶标。

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