Global profiling of lysine reactivity and ligandability in the human proteome

化学 赖氨酸 蛋白质组 生物化学 半胱氨酸 小分子 人类蛋白质组计划 氨基酸 电泳剂 丝氨酸 亲核细胞 蛋白质组学 基因 催化作用
作者
Stephan M. Hacker,Keriann M. Backus,Michael R. Lazear,Stefano Forli,Bruno E. Correia,Benjamin F. Cravatt
出处
期刊:Nature Chemistry [Springer Nature]
卷期号:9 (12): 1181-1190 被引量:276
标识
DOI:10.1038/nchem.2826
摘要

Nucleophilic amino acids make important contributions to protein function, including performing key roles in catalysis and serving as sites for post-translational modification. Electrophilic groups that target amino-acid nucleophiles have been used to create covalent ligands and drugs, but have, so far, been mainly limited to cysteine and serine. Here, we report a chemical proteomic platform for the global and quantitative analysis of lysine residues in native biological systems. We have quantified, in total, more than 9,000 lysines in human cell proteomes and have identified several hundred residues with heightened reactivity that are enriched at protein functional sites and can frequently be targeted by electrophilic small molecules. We have also discovered lysine-reactive fragment electrophiles that inhibit enzymes by active site and allosteric mechanisms, as well as disrupt protein–protein interactions in transcriptional regulatory complexes, emphasizing the broad potential and diverse functional consequences of liganding lysine residues throughout the human proteome. A chemical proteomic strategy has now been reported for the global profiling of lysine reactivity and ligandability. Using this approach, >9000 lysines in the human proteome were evaluated, leading to the discovery of hyper-reactive lysines, and lysines that can be targeted by electrophilic small molecules to perturb enzyme function and protein–protein interactions.
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