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GSK-3β 在运动废用条件下骨骼肌蛋白周转、肌球蛋白表型和氧化能力调节中的作用。

The Role of GSK-3β in the Regulation of Protein Turnover, Myosin Phenotype, and Oxidative Capacity in Skeletal Muscle under Disuse Conditions.

机构信息

Myology Laboratory, Institute of Biomedical Problems RAS, 123007 Moscow, Russia.

出版信息

Int J Mol Sci. 2021 May 11;22(10):5081. doi: 10.3390/ijms22105081.

Abstract

Skeletal muscles, being one of the most abundant tissues in the body, are involved in many vital processes, such as locomotion, posture maintenance, respiration, glucose homeostasis, etc. Hence, the maintenance of skeletal muscle mass is crucial for overall health, prevention of various diseases, and contributes to an individual's quality of life. Prolonged muscle inactivity/disuse (due to limb immobilization, mechanical ventilation, bedrest, spaceflight) represents one of the typical causes, leading to the loss of muscle mass and function. This disuse-induced muscle loss primarily results from repressed protein synthesis and increased proteolysis. Further, prolonged disuse results in slow-to-fast fiber-type transition, mitochondrial dysfunction and reduced oxidative capacity. Glycogen synthase kinase 3β (GSK-3β) is a key enzyme standing at the crossroads of various signaling pathways regulating a wide range of cellular processes. This review discusses various important roles of GSK-3β in the regulation of protein turnover, myosin phenotype, and oxidative capacity in skeletal muscles under disuse/unloading conditions and subsequent recovery. According to its vital functions, GSK-3β may represent a perspective therapeutic target in the treatment of muscle wasting induced by chronic disuse, aging, and a number of diseases.

摘要

骨骼肌是人体中最丰富的组织之一,参与许多重要的生理过程,如运动、姿势维持、呼吸、葡萄糖稳态等。因此,维持骨骼肌质量对于整体健康、预防各种疾病以及提高个体的生活质量至关重要。长时间的肌肉失用/不活动(由于肢体固定、机械通气、卧床休息、太空飞行)是导致肌肉质量和功能丧失的典型原因之一。这种废用性肌肉损失主要是由于蛋白质合成受到抑制和蛋白水解增加所致。此外,长时间的不活动还会导致慢肌向快肌纤维型转变、线粒体功能障碍和氧化能力降低。糖原合酶激酶 3β(GSK-3β)是一种关键酶,位于调节多种细胞过程的各种信号通路的交汇点。本综述讨论了 GSK-3β 在废用/卸载条件下以及随后的恢复过程中对骨骼肌中蛋白质周转、肌球蛋白表型和氧化能力的调节中的各种重要作用。根据其重要功能,GSK-3β 可能成为治疗慢性废用、衰老和多种疾病引起的肌肉萎缩的有前途的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6adb/8151958/dfda29d9a57f/ijms-22-05081-g001.jpg

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