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Covariation MS uncovers a protein that controls cysteine catabolism

https://www.nature.com/ Nature. 2025-09; 
Haopeng Xiao, Martha Ordonez, Emma C. Fink, Taylor A. Covington, Hilina B. Woldemichael, Junyi Chen, Mika Sarkin Jain, Milan H. Rohatgi, Shelley M. Wei, Nils Burger, Muneeb A. Sharif, Julius Jan, Yaoyu Wang, Jonathan J. Petrocelli, Katherine Blackmore, Amanda L. Smythers, Bingsen Zhang, Matthew Gilbert, Hakyung Cheong, Sumeet A. Khetarpal, Arianne Smith, Dina Bogoslavski, Yu Lei, Laura Pontano Vaites, …Edward T. Chouchani Department of Cancer Biology, Dana-Farber Cancer Institute, Boston
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Abstract

The regulation of metabolic processes by proteins is fundamental to biology and yet is incompletely understood. Here we develop a mass spectrometry (MS)-based approach that leverages genetic diversity to nominate functional relationships between 285 metabolites and 11,868 proteins in living tissues. This method recapitulates protein–metabolite functional relationships mediated by direct physical interactions and local metabolic pathway regulation while nominating 3,542 previously undescribed relationships. With this foundation, we identify a mechanism of regulation over liver cysteine utilization and cholesterol handling, regulated by the poorly characterized protein LRRC58. We show that LRRC58 is the substra... More

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