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非基于凝胶的双18O标记定量蛋白质组学策略

Non-gel-based dual 18O labeling quantitative proteomics strategy.

作者信息

Liu Huiling, Zhang Yangjun, Meng Lingyan, Qin Peibing, Wei Junying, Jia Wei, Li Xiaofeng, Cai Yun, Qian Xiaohong

机构信息

State Key Lab of Proteomics, Beijing Proteome Research Center, Beijing Institute of Radiation Medicine, 33 Zhongguancun Life Park Road, Beijing 102206, China.

出版信息

Anal Chem. 2007 Oct 15;79(20):7700-7. doi: 10.1021/ac0709302. Epub 2007 Sep 15.

Abstract

To improve the quantitation of target proteins in proteomic analyses, we developed a non-gel-based, dual (18)O labeling strategy. This global isotope labeling method utilizes an acylating chemical reagent with two anhydride functional groups, bicyclic anhydride diethylenetriamine-N,N,N', N' ',N' '-pentaacetic acid (DTPA) dianhydride. In the first (18)O labeling method (chemical (18)O labeling) of our dual strategy, one functional group was covalently coupled to the primary amines of the peptides and (18)O from H2(18)O was incorporated at the other functional group by hydrolysis. In the second (18)O labeling method (chemical and enzyme-catalyzed (18)O labeling), chemical (18)O labeling and enzyme-catalyzed (18)O labeling of the carboxyl- termini of the peptides were combined. The acylation reaction between DTPA and the model peptides was rapid and specific, and the DTPA-modified N-termini of the peptides promoted only y-series ions in MS/MS. The two methods of (18)O labeling were accurate in the range 0.1-10 of (16)O/(18)O peptide ratios. The deviations of the methods were <20%. In contrast to current proteolytic (18)O labeling methods, there was no (18)O to (16)O back-exchange in the first method and no isotope peaks in MS in the second method. The combination of chemical and proteolytic (18)O labeling improved the confidence of the quantitation results.

摘要

为了提高蛋白质组分析中目标蛋白的定量准确性,我们开发了一种基于非凝胶的双(18)O标记策略。这种全局同位素标记方法利用一种带有两个酸酐官能团的酰化化学试剂,即双环酸酐二亚乙基三胺-N,N,N',N'',N'''-五乙酸(DTPA)二酐。在我们双策略的第一种(18)O标记方法(化学(18)O标记)中,一个官能团与肽段的伯胺共价偶联,另一个官能团通过水解将H2(18)O中的(18)O掺入。在第二种(18)O标记方法(化学和酶催化(18)O标记)中,将肽段羧基末端的化学(18)O标记和酶催化(18)O标记相结合。DTPA与模型肽段之间的酰化反应快速且具有特异性,肽段的DTPA修饰的N末端在MS/MS中仅促进y系列离子。两种(18)O标记方法在(16)O/(18)O肽段比率为0.1 - 10的范围内是准确的。这些方法的偏差<20%。与当前的蛋白水解(18)O标记方法不同,第一种方法中不存在(18)O到(16)O的反向交换,第二种方法在MS中不存在同位素峰。化学和蛋白水解(18)O标记的结合提高了定量结果的可信度。

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