The human zinc-binding cysteine proteome.

人类锌结合半胱氨酸蛋白质组

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作者:Burger Nils, Mittenbühler Melanie J, Xiao Haopeng, Shin Sanghee, Wei Shelley M, Henze Erik K, Schindler Sebastian, Mehravar Sepideh, Wood David M, Petrocelli Jonathan J, Sun Yizhi, Sprenger Hans-Georg, Latorre-Muro Pedro, Smythers Amanda L, Bozi Luiz H M, Darabedian Narek, Zhu Yingde, Seo Hyuk-Soo, Dhe-Paganon Sirano, Che Jianwei, Chouchani Edward T
Zinc is an essential micronutrient that regulates a wide range of physiological processes, most often through zinc binding to protein cysteine residues. Despite being critical for modulation of protein function, the cysteine sites in the majority of the human proteome that are subject to zinc binding remain undefined. Here, we develop ZnCPT, a deep and quantitative mapping of the zinc-binding cysteine proteome. We define 6,173 zinc-binding cysteines, uncovering protein families across major domains of biology that are subject to constitutive or inducible zinc binding. ZnCPT enables systematic discovery of zinc-regulated structural, enzymatic, and allosteric functional domains. On this basis, we identify 52 cancer genetic dependencies subject to zinc binding and nominate malignancies sensitive to zinc-induced cytotoxicity. We discover a mechanism of zinc regulation over glutathione reductase (GSR), which drives cell death in GSR-dependent lung cancers. We provide ZnCPT as a resource for understanding mechanisms of zinc regulation of protein function.

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