半胱氨酸
生物发生
蛋白质组
反应性(心理学)
生物化学
化学
氨基酸
蛋白质组学
计算生物学
生物
酶
基因
医学
替代医学
病理
作者
Eranthie Weerapana,Chu Wang,Gabriel Simón,Florian Richter,Sagar D. Khare,Myles B. D. Dillon,Daniel A. Bachovchin,Kerri Mowen,David Baker,Benjamin F. Cravatt
出处
期刊:Nature
[Nature Portfolio]
日期:2010-11-17
卷期号:468 (7325): 790-795
被引量:1360
摘要
Cysteine is the most intrinsically nucleophilic amino acid in proteins, where its reactivity is tuned to perform diverse biochemical functions. The absence of a consensus sequence that defines functional cysteines in proteins has hindered their discovery and characterization. Here we describe a proteomics method to profile quantitatively the intrinsic reactivity of cysteine residues en masse directly in native biological systems. Hyper-reactivity was a rare feature among cysteines and it was found to specify a wide range of activities, including nucleophilic and reductive catalysis and sites of oxidative modification. Hyper-reactive cysteines were identified in several proteins of uncharacterized function, including a residue conserved across eukaryotic phylogeny that we show is required for yeast viability and is involved in iron-sulphur protein biogenesis. We also demonstrate that quantitative reactivity profiling can form the basis for screening and functional assignment of cysteines in computationally designed proteins, where it discriminated catalytically active from inactive cysteine hydrolase designs.
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