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蛋白质分级分离对血清和血浆蛋白质组分析深度的贡献。

Contribution of protein fractionation to depth of analysis of the serum and plasma proteomes.

作者信息

Faca Vitor, Pitteri Sharon J, Newcomb Lisa, Glukhova Veronika, Phanstiel Doug, Krasnoselsky Alexei, Zhang Qing, Struthers Jason, Wang Hong, Eng Jimmy, Fitzgibbon Matt, McIntosh Martin, Hanash Samir

机构信息

Fred Hutchinson Cancer Research Center, 1100 Fairview Avenue North, Seattle, Washington 98109, USA.

出版信息

J Proteome Res. 2007 Sep;6(9):3558-65. doi: 10.1021/pr070233q. Epub 2007 Aug 16.

Abstract

In-depth analysis of the serum and plasma proteomes by mass spectrometry is challenged by the vast dynamic range of protein abundance and substantial complexity. There is merit in reducing complexity through fractionation to facilitate mass spectrometry analysis of low-abundance proteins. However, fractionation reduces throughput and has the potential of diluting individual proteins or inducing their loss. Here, we have investigated the contribution of extensive fractionation of intact proteins to depth of analysis. Pooled serum depleted of abundant proteins was fractionated by an orthogonal two-dimensional system consisting of anion-exchange and reversed-phase chromatography. The resulting protein fractions were aliquotted; one aliquot was analyzed by shotgun LC-MS/MS, and another was further resolved into protein bands in a third dimension using SDS-PAGE. Individual gel bands were excised and subjected to in situ digestion and mass spectrometry. We demonstrate that increased fractionation results in increased depth of analysis based on total number of proteins identified in serum and based on representation in individual fractions of specific proteins identified in gel bands following a third-dimension SDS gel analysis. An intact protein analysis system (IPAS) based on a two-dimensional plasma fractionation schema was implemented that resulted in identification of 1662 proteins with high confidence with representation of protein isoforms that differed in their chromatographic mobility. Further increase in depth of analysis was accomplished by repeat analysis of aliquots from the same set of two-dimensional fractions resulting in overall identification of 2254 proteins. We conclude that substantial depth of analysis of proteins from milliliter quantities of serum or plasma and detection of isoforms are achieved with depletion of abundant proteins followed by two-dimensional protein fractionation and MS analysis of individual fractions.

摘要

通过质谱对血清和血浆蛋白质组进行深入分析面临着蛋白质丰度动态范围广和复杂性高的挑战。通过分级分离降低复杂性有助于对低丰度蛋白质进行质谱分析。然而,分级分离会降低通量,并且有可能稀释单个蛋白质或导致其丢失。在此,我们研究了完整蛋白质的广泛分级分离对分析深度的贡献。将去除丰富蛋白质的混合血清通过由阴离子交换和反相色谱组成的正交二维系统进行分级分离。将得到的蛋白质级分进行分装;一份分装通过鸟枪法液相色谱-串联质谱(LC-MS/MS)进行分析,另一份在第三维中使用十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS-PAGE)进一步分离成蛋白条带。切下单个凝胶条带并进行原位消化和质谱分析。我们证明,基于血清中鉴定出的蛋白质总数以及在第三维SDS凝胶分析后凝胶条带中鉴定出的特定蛋白质在各个级分中的代表性,分级分离增加会导致分析深度增加。实施了基于二维血浆分级分离模式的完整蛋白质分析系统(IPAS),该系统高置信度地鉴定出1662种蛋白质,并呈现出色谱迁移率不同的蛋白质异构体。通过对同一组二维级分的分装进行重复分析,进一步增加了分析深度,总共鉴定出2254种蛋白质。我们得出结论,通过去除丰富蛋白质,然后进行二维蛋白质分级分离和对各个级分进行质谱分析,可以实现对毫升量血清或血浆中蛋白质的深度分析以及异构体的检测。

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