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◆ bioRxiv : the preprint server for biology2026-09-17· cell biology

A quantitative redox proteome of the human muscle response to exercise.

Yu Lei, Jonathan J Petrocelli, Anita Reddy, Carlos Henríquez-Olguin, Nils Burger, Sanghee Shin, Bingsen Zhang, Taylor Covington, Markus Waldeck-Weiermair, Jiuchun Zhang, Shelley M Wei, Thomas E Jensen, Christian T Voldstedlund, Christian S Carl, Bente Kiens, Erik A Richter, Edward T Chouchani

原始摘要(英文原文)· Original abstract
Reactive oxygen species (ROS) regulate protein function through reversible cysteine oxidation. In human skeletal muscle, exercise-induced ROS initiates adaptations such as mitochondrial biogenesis, increased insulin sensitivity, and hypertrophy. However, specific protein targets of ROS regulation during exercise remain unclear owing to longstanding challenges in analyzing redox proteomes in vivo . We applied cysteine derivatization and multiplexed proteomics to map muscle protein cysteine oxidation in humans during exercise. The OxiMuscle dataset quantifies reversible modifications across 9,177 unique cysteine sites on 2,782 proteins, comprising 17,492 individual cysteine site measurements in young men undergoing three types of exercise, providing the first comprehensive, site-resolved and quantitative analysis of the exercise-regulated redox cysteine proteome in humans. We systematically define cysteine oxidation targets regulated by at least one form of exercise, many of which reside in proteins with established roles in muscle physiology. Among these sites is a redox-regulated cysteine on the autophagy receptor protein p62. We demonstrate that reversible oxidation of this cysteine regulates p62-mediated autophagy upon myotube contraction and mouse muscle adaptation to exercise in vivo . Together, these results define a redox-driven mechanism linking exercise-induced autophagy to muscle adaptation. More broadly, our findings offer a comprehensive resource on redox-signaling networks in human muscle, accessible at http://oximuscle-alb-1899330623.us-east-1.elb.amazonaws.com/ .
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A quantitative redox proteome of the human muscle response to exercise. — 科研速览 Science Skim