作者
Haopeng Xiao, Mark P Jedrychowski, Devin K Schweppe, Edward L Huttlin, Qing Yu, David E Heppner, Jiaming Li, Jiani Long, Evanna L Mills, John Szpyt, Zhixiang He, Guangyan Du, Ryan Garrity, Anita Reddy, Laura Pontano Vaites, Joao A Paulo, Tinghu Zhang, Nathanael S Gray, Steven P Gygi, Edward T Chouchani
发表日期
2020/3/5
期刊
Cell
卷号
180
期号
5
页码范围
968-983. e24
出版商
Elsevier
简介
Mammalian tissues engage in specialized physiology that is regulated through reversible modification of protein cysteine residues by reactive oxygen species (ROS). ROS regulate a myriad of biological processes, but the protein targets of ROS modification that drive tissue-specific physiology in vivo are largely unknown. Here, we develop Oximouse, a comprehensive and quantitative mapping of the mouse cysteine redox proteome in vivo. We use Oximouse to establish several paradigms of physiological redox signaling. We define and validate cysteine redox networks within each tissue that are tissue selective and underlie tissue-specific biology. We describe a common mechanism for encoding cysteine redox sensitivity by electrostatic gating. Moreover, we comprehensively identify redox-modified disease networks that remodel in aged mice, establishing a systemic molecular basis for the long-standing proposed …
引用总数
20192020202120222023202422970656543
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