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用于测量相对动态蛋白质周转的合成/降解比质谱分析

Synthesis/degradation ratio mass spectrometry for measuring relative dynamic protein turnover.

作者信息

Cargile Benjamin J, Bundy Jonathan L, Grunden Amy M, Stephenson James L

机构信息

Mass Spectrometry Research Group, Research Triangle Institute, 3040 Cornwallis Road, Research Triangle Park, North Carolina 27709-2194, USA.

出版信息

Anal Chem. 2004 Jan 1;76(1):86-97. doi: 10.1021/ac034841a.

Abstract

One of the major unanswered questions in quantitative proteomics is that of dynamic protein turnover in the cell. Here we present a new approach to quantitative proteomics that measures the relative dynamic turnover of proteins in cellular systems. In this approach, termed synthesis/degradation ratio mass spectrometry, stable isotope labeling is employed to calculate a relative synthesis/degradation ratio that reflects the relative rate at which 13C is incorporated into individual proteins in the cell. This synthesis/degradation ratio calculation is based on a Poisson distribution model that is designed to support high-throughput analysis. Protein separation and analysis is accomplished by utilizing one-dimensional SDS-PAGE gel electrophoresis followed by cutting the gel into a series of bands for in-gel digestion. The resulting peptide mixtures are analyzed via solid-phase MALDI LC-MS and LC-MS/MS using a tandem time-of-flight mass spectrometer. A portion of the soluble protein fraction from an E. coli K-12 strain was analyzed with synthesis/degradation ratios varying from approximately 0.1 to 4.4 for a variety of different proteins. Unlike other quantitative techniques, synthesis/degradation ratio mass spectrometry requires only a single cell culture to obtain useful biological information about the processes occurring inside a cell. This technique is highly amenable to shotgun proteomics-based approaches and thus should allow relative turnover measurements for whole proteomes in the future.

摘要

定量蛋白质组学中一个主要的未解决问题是细胞内蛋白质的动态周转。在此,我们提出一种新的定量蛋白质组学方法,该方法可测量细胞系统中蛋白质的相对动态周转。在这种被称为合成/降解比质谱分析的方法中,利用稳定同位素标记来计算相对合成/降解比,该比值反映了13C掺入细胞内单个蛋白质的相对速率。这种合成/降解比的计算基于泊松分布模型,该模型旨在支持高通量分析。蛋白质的分离和分析通过一维SDS-PAGE凝胶电泳完成,随后将凝胶切成一系列条带进行胶内消化。所得肽混合物通过使用串联飞行时间质谱仪的固相MALDI LC-MS和LC-MS/MS进行分析。对来自大肠杆菌K-12菌株的一部分可溶性蛋白质组分进行了分析,多种不同蛋白质的合成/降解比在约0.1至4.4之间变化。与其他定量技术不同,合成/降解比质谱分析仅需要单一细胞培养物就能获得有关细胞内发生过程的有用生物学信息。该技术非常适合基于鸟枪法蛋白质组学的方法,因此未来应该能够对整个蛋白质组进行相对周转测量。

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