Application of iTRAQ Reagents to Relatively Quantify the Reversible Redox State of Cysteine Residues.

International journal of proteomics Pub Date : 2012-01-01 Epub Date: 2012-07-15 DOI:10.1155/2012/514847
Brian McDonagh, Pablo Martínez-Acedo, Jesús Vázquez, C Alicia Padilla, David Sheehan, José Antonio Bárcena
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引用次数: 20

Abstract

Cysteines are one of the most rarely used amino acids, but when conserved in proteins they often play critical roles in structure, function, or regulation. Reversible cysteine modifications allow for potential redox regulation of proteins. Traditional measurement of the relative absolute quantity of a protein between two samples is not always necessarily proportional to the activity of the protein. We propose application of iTRAQ reagents in combination with a previous thiol selection method to relatively quantify the redox state of cysteines both within and between samples in a single analysis. Our method allows for the identification of the proteins, identification of redox-sensitive cysteines within proteins, and quantification of the redox status of individual cysteine-containing peptides. As a proof of principle, we applied this technique to yeast alcohol dehydrogenase-1 exposed in vitro to H(2)O(2) and also in vivo to the complex proteome of the Gram-negative bacterium Bacillus subtilis.

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应用iTRAQ试剂相对定量半胱氨酸残基的可逆氧化还原状态。
半胱氨酸是最不常用的氨基酸之一,但当它们在蛋白质中保存时,它们通常在结构、功能或调节中起关键作用。可逆半胱氨酸修饰允许潜在的蛋白质氧化还原调节。对两个样品之间蛋白质的相对绝对数量的传统测量不一定总是与蛋白质的活性成正比。我们建议将iTRAQ试剂与先前的硫醇选择方法相结合,在单次分析中相对量化样品内部和样品之间半胱氨酸的氧化还原状态。我们的方法允许鉴定蛋白质,鉴定蛋白质中的氧化还原敏感半胱氨酸,以及定量单个含半胱氨酸肽的氧化还原状态。作为原理证明,我们将该技术应用于酵母醇脱氢酶-1在体外暴露于H(2)O(2),并在体内暴露于革兰氏阴性细菌枯草芽孢杆菌的复杂蛋白质组。
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