亚磺酸
半胱氨酸
化学
蛋白质组学
蛋白质组
组合化学
化学生物学
连接器
生物化学
串联质谱法
生物素化
链霉亲和素
点击化学
鸟枪蛋白质组学
硫醇
生物素
质谱法
色谱法
酶
计算机科学
操作系统
基因
作者
Jing Yang,Vinayak Gupta,Keri A. Tallman,Ned A. Porter,Kate S. Carroll,D.C. Liebler
出处
期刊:Nature Protocols
[Springer Nature]
日期:2015-06-18
卷期号:10 (7): 1022-1037
被引量:140
标识
DOI:10.1038/nprot.2015.062
摘要
Protein S-sulfenylation is the reversible oxidative modification of cysteine thiol groups to form cysteine S-sulfenic acids. Mapping the specific sites of protein S-sulfenylation onto complex proteomes is crucial to understanding the molecular mechanisms controlling redox signaling and regulation. This protocol describes global, in situ, site-specific analysis of protein S-sulfenylation using sulfenic acid-specific chemical probes and mass spectrometry (MS)-based proteomics. The major steps in this protocol are as follows: (i) optimization of conditions for selective labeling of cysteine S-sulfenic acids in intact cells with the commercially available dimedone-based probe, DYn-2; (ii) tagging the modified cysteines with a functionalized biotin reagent containing a cleavable linker via Cu(I)-catalyzed azide-alkyne cycloaddition reaction; (iii) enrichment of the biotin-tagged tryptic peptides with streptavidin; (iv) liquid chromatography-tandem MS (LC-MS/MS)-based shotgun proteomics; and (v) computational data analysis. We also outline strategies for quantitative analysis of this modification in cells responding to redox perturbations and discuss special issues pertaining to experimental design of thiol redox studies. Our chemoproteomic platform should be broadly applicable to the investigation of other bio-orthogonal chemically engineered post-translational modifications. The entire analysis protocol takes ∼1 week to complete.
科研通智能强力驱动
Strongly Powered by AbleSci AI