骨骼肌
生物
细胞生物学
内科学
心肌细胞
分泌物
内分泌学
旁分泌信号
生物化学
受体
医学
作者
Anita Reddy,Luiz H. M. Bozi,Omar Yaghi,Evanna L. Mills,Haopeng Xiao,Hilary E. Nicholson,Margherita Paschini,João A. Paulo,Ryan Garrity,Dina Laznik-Bogoslavski,Julio Cesar Batista Ferreira,Christian S. Carl,Kim A. Sjøberg,Jørgen F. P. Wojtaszewski,Jacob Jeppesen,Bente Kiens,Steven P. Gygi,Erik A. Richter,Diane Mathis,Edward T. Chouchani
出处
期刊:Cell
[Elsevier]
日期:2020-09-17
卷期号:183 (1): 62-75.e17
被引量:173
标识
DOI:10.1016/j.cell.2020.08.039
摘要
Summary
In response to skeletal muscle contraction during exercise, paracrine factors coordinate tissue remodeling, which underlies this healthy adaptation. Here we describe a pH-sensing metabolite signal that initiates muscle remodeling upon exercise. In mice and humans, exercising skeletal muscle releases the mitochondrial metabolite succinate into the local interstitium and circulation. Selective secretion of succinate is facilitated by its transient protonation, which occurs upon muscle cell acidification. In the protonated monocarboxylic form, succinate is rendered a transport substrate for monocarboxylate transporter 1, which facilitates pH-gated release. Upon secretion, succinate signals via its cognate receptor SUCNR1 in non-myofibrillar cells in muscle tissue to control muscle-remodeling transcriptional programs. This succinate-SUCNR1 signaling is required for paracrine regulation of muscle innervation, muscle matrix remodeling, and muscle strength in response to exercise training. In sum, we define a bioenergetic sensor in muscle that utilizes intracellular pH and succinate to coordinate tissue adaptation to exercise.
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