Muscle-derived small extracellular vesicles induce liver fibrosis during overtraining

IF 27.7 1区 生物学 Q1 CELL BIOLOGY
Ya Liu, Rui Zhou, Yifan Guo, Biao Hu, Lingqi Xie, Yuze An, Jie Wen, Zheyu Liu, Min Zhou, Weihong Kuang, Yao Xiao, Min Wang, Genqing Xie, Haiyan Zhou, Renbin Lu, Hui Peng, Yan Huang
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Abstract

The benefits of exercise for metabolic health occur in a dose-dependent manner. However, the adverse effects of overtraining and their underlying mechanisms remain unclear. Here, we show that overtraining induces hepatic fibrosis. Mechanistically, we find that excessive lactate accumulation in skeletal muscle leads to the lactylation of SH3 domain-containing 3 (SORBS3), triggering its liquid-liquid phase separation (LLPS). LLPS of SORBS3 enhances its interaction with flotillin 1 and selectively facilitates the sorting of F-box protein 2 (FBXO2) into small extracellular vesicles, referred to as “lactate bodies.” Lactate bodies induce hepatocyte apoptosis followed by hepatic stellate cell activation via myeloid cell leukemia sequence 1 (MCL1)-BAX/BAK signaling. Inhibition of SORBS3 lactylation or FBXO2 disrupts lactate bodies formation and alleviates overtraining-triggered liver fibrosis. Likewise, reduction of muscle lactate bodies formation by salidroside attenuates overtraining-induced liver fibrosis. Collectively, we identify a process by which overtraining induces hepatic fibrosis, highlighting a potential therapeutic target for liver health.

Abstract Image

肌肉来源的小细胞外囊泡在过度训练中诱导肝纤维化
运动对代谢健康的益处呈剂量依赖性。然而,过度训练的不良影响及其潜在机制尚不清楚。在这里,我们表明过度训练诱导肝纤维化。在机制上,我们发现骨骼肌中过多的乳酸积累导致含SH3结构域3 (SORBS3)的乳酸化,触发其液-液相分离(LLPS)。SORBS3的LLPS增强了其与flotillin 1的相互作用,并选择性地促进F-box蛋白2 (FBXO2)分选到小的细胞外囊泡中,称为“乳酸体”。乳酸小体通过髓细胞白血病序列1 (MCL1)-BAX/BAK信号通路诱导肝细胞凋亡,随后激活肝星状细胞。抑制SORBS3乳酸化或FBXO2可破坏乳酸小体的形成,减轻过度训练引发的肝纤维化。同样,红景天苷减少肌肉乳酸体的形成可减轻过度训练引起的肝纤维化。总的来说,我们确定了过度训练诱导肝纤维化的过程,强调了肝脏健康的潜在治疗靶点。
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来源期刊
Cell metabolism
Cell metabolism 生物-内分泌学与代谢
CiteScore
48.60
自引率
1.40%
发文量
173
审稿时长
2.5 months
期刊介绍: Cell Metabolism is a top research journal established in 2005 that focuses on publishing original and impactful papers in the field of metabolic research.It covers a wide range of topics including diabetes, obesity, cardiovascular biology, aging and stress responses, circadian biology, and many others. Cell Metabolism aims to contribute to the advancement of metabolic research by providing a platform for the publication and dissemination of high-quality research and thought-provoking articles.
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