骨骼肌
肌萎缩性肥胖
肌萎缩
功能(生物学)
线粒体
细胞生物学
生物
医学
内科学
作者
Chao Song,Zheng Wu,Guoming Liu,Yiyang Xu,Zhibo Deng,Yu Xiu,Rongsheng Zhang,Linhai Yang,Yifei Zhang,Guoyu Yu,Yibin Su,Jun Luo,Bingwei He,Jie Xu,Hanhao Dai
出处
期刊:Redox biology
[Elsevier BV]
日期:2024-12-12
卷期号:79: 103467-103467
被引量:2
标识
DOI:10.1016/j.redox.2024.103467
摘要
In aging and metabolic disease, sarcopenic obesity (SO) correlates with intramuscular adipose tissue (IMAT). Using bioinformatics analysis, we found a potential target protein Extended Synaptotagmin 1 (E-syt1) in SO. To investigate the regulatory role of E-syt1 in muscle metabolism, we performed in vivo and in vitro experiments through E-syt1 loss- and gain-of-function on muscle physiology. When E-syt1 is overexpressed in vitro, myoblast proliferation, differentiation, mitochondrial respiration, biogenesis, and mitochondrial dynamics are impaired, which were alleviated by the silence of E-syt1. Furthermore, overexpression of E-syt1 inhibited mitophagic flux. Mechanistically, E-syt1 overexpression leads to mitochondrial calcium overload and mitochondrial ROS burst, inhibits the fusion of mitophagosomes with lysosomes, and impedes the acidification of lysosomes. Animal experiments demonstrated the inhibition of E-syt1 increased the capacity of endurance exercise, muscle mass, mitochondrial function, and oxidative capacity of the muscle fibers in OVX mice. These findings establish E-syt1 as a novel contributor to the pathogenesis of skeletal muscle metabolic disorders in SO. Consequently, targeting E-syt1-induced dysfunction may serve as a viable strategy for attenuating SO.
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