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拟南芥中用于定量蛋白质组学分析的完全代谢标记与部分代谢标记的比较。

Comparison of full versus partial metabolic labeling for quantitative proteomics analysis in Arabidopsis thaliana.

作者信息

Huttlin Edward L, Hegeman Adrian D, Harms Amy C, Sussman Michael R

机构信息

Department of Biochemistry, University of Wisconsin, Madison, Wisconsin 53706, USA.

出版信息

Mol Cell Proteomics. 2007 May;6(5):860-81. doi: 10.1074/mcp.M600347-MCP200. Epub 2007 Feb 9.

Abstract

In recent years a variety of quantitative proteomics techniques have been developed, allowing characterization of changes in protein abundance in a variety of organisms under various biological conditions. Because it allows excellent control for error at all steps in sample preparation and analysis, full metabolic labeling using (15)N has emerged as an important strategy for quantitative proteomics, having been applied in a variety of organisms from yeast to Arabidopsis and even rats. However, challenges associated with complete replacement of (14)N with (15)N can make its application in many complex eukaryotic systems impractical on a routine basis. Extending a concept proposed by Whitelegge et al. (Whitelegge, J. P., Katz, J. E., Pihakari, K. A., Hale, R., Aguilera, R., Gomez, S. M., Faull, K. F., Vavilin, D., and Vermaas, W. (2004) Subtle modification of isotope ratio proteomics; an integrated strategy for expression proteomics. Phytochemistry 65, 1507-1515), we investigate an alternative strategy for quantitative proteomics that relies upon the subtle changes in isotopic envelope shape that result from partial metabolic labeling to compare relative abundances of labeled and unlabeled peptides in complex mixtures. We present a novel algorithm for the automated quantitative analysis of partial incorporation samples via LC-MS. We then compare the performance of partial metabolic labeling with traditional full metabolic labeling for quantification of controlled mixtures of labeled and unlabeled Arabidopsis peptides. Finally we evaluate the performance of each technique for comparison of light- versus dark-grown Arabidopsis with respect to reproducibility and numbers of peptide and protein identifications under more realistic experimental conditions. Overall full metabolic labeling and partial metabolic labeling prove to be comparable with respect to dynamic range, accuracy, and reproducibility, although partial metabolic labeling consistently allows quantification of a higher percentage of peptide observations across the dynamic range. This difference is especially pronounced at extreme ratios. Ultimately both full metabolic labeling and partial metabolic labeling prove to be well suited for quantitative proteomics characterization.

摘要

近年来,已经开发出了多种定量蛋白质组学技术,可用于表征各种生物在不同生物学条件下蛋白质丰度的变化。由于它能在样品制备和分析的所有步骤中对误差进行出色的控制,使用(15)N的完全代谢标记已成为定量蛋白质组学的一项重要策略,已应用于从酵母到拟南芥甚至大鼠等多种生物。然而,将(14)N完全替换为(15)N所带来的挑战,使得其在许多复杂真核系统中的常规应用不切实际。扩展Whitelegge等人提出的概念(Whitelegge, J. P., Katz, J. E., Pihakari, K. A., Hale, R., Aguilera, R., Gomez, S. M., Faull, K. F., Vavilin, D., and Vermaas, W. (2004) 同位素比率蛋白质组学的细微修饰;一种表达蛋白质组学的综合策略。植物化学65, 1507 - 1515),我们研究了一种定量蛋白质组学的替代策略,该策略依赖于部分代谢标记导致的同位素包络形状的细微变化,以比较复杂混合物中标记和未标记肽段的相对丰度。我们提出了一种通过液相色谱 - 质谱对部分掺入样品进行自动定量分析的新算法。然后,我们比较了部分代谢标记与传统完全代谢标记在定量标记和未标记拟南芥肽段的对照混合物方面的性能。最后,我们在更实际的实验条件下,评估了每种技术在比较光生和暗生拟南芥时在重现性以及肽段和蛋白质鉴定数量方面的性能。总体而言,完全代谢标记和部分代谢标记在动态范围、准确性和重现性方面被证明是相当的,尽管部分代谢标记在整个动态范围内始终能对更高比例的肽段观测值进行定量。这种差异在极端比例下尤为明显。最终,完全代谢标记和部分代谢标记都被证明非常适合用于定量蛋白质组学表征。

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