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肽段离线等电聚焦电泳:一种适用于复杂真核生物样品分级分离的分析前步骤,与定量iTRAQ标记兼容。

Peptides OFFGEL electrophoresis: a suitable pre-analytical step for complex eukaryotic samples fractionation compatible with quantitative iTRAQ labeling.

作者信息

Chenau Jérôme, Michelland Sylvie, Sidibe Jonathan, Seve Michel

机构信息

Centre de Recherche INSERM/UJF U, Cibles Diagnostiques ou Thérapeutiques et Vectorisation des Drogues dans le Cancer du Poumon Institut Albert Bonniot, La Tronche, France.

出版信息

Proteome Sci. 2008 Feb 26;6:9. doi: 10.1186/1477-5956-6-9.

Abstract

BACKGROUND

The proteomes of mammalian biological fluids, cells and tissues are complex and composed of proteins with a wide dynamic range. The effective way to overcome the complexity of these proteomes is to combine several fractionation steps. OFFGEL fractionation, recently developed by Agilent Technologies, provides the ability to pre-fractionate peptides into discrete liquid fractions and demonstrated high efficiency and repeatability necessary for the analysis of such complex proteomes.

RESULTS

We evaluated OFFGEL fractionator technology to separate peptides from two complex proteomes, human secretome and human plasma, using a 24-wells device encompassing the pH range 3-10. In combination with reverse phase liquid chromatography, peptides from these two samples were separated and identified by MALDI TOF-TOF. The repartition profiles of the peptides in the different fractions were analyzed and explained by their content in charged amino acids using an algorithmic model based on the possible combinations of amino acids. We also demonstrated for the first time the compatibility of OFFGEL separation technology with the quantitative proteomic labeling technique iTRAQ allowing inclusion of this technique in complex samples comparative proteomic workflow.

CONCLUSION

The reported data showed that OFFGEL system provides a highly valuable tool to fractionate peptides from complex eukaryotic proteomes (plasma and secretome) and is compatible with iTRAQ labeling quantitative studies. We therefore consider peptides OFFGEL fractionation as an effective addition to our strategy and an important system for quantitative proteomics studies.

摘要

背景

哺乳动物生物体液、细胞和组织的蛋白质组非常复杂,由动态范围广泛的蛋白质组成。克服这些蛋白质组复杂性的有效方法是结合多个分级分离步骤。安捷伦科技公司最近开发的等聚焦凝胶电泳分离技术,能够将肽预先分级分离成离散的液体组分,并显示出分析此类复杂蛋白质组所需的高效率和可重复性。

结果

我们使用涵盖pH范围3-10的24孔装置,评估了等聚焦凝胶电泳分离技术从两种复杂蛋白质组(人类分泌蛋白质组和人类血浆)中分离肽的能力。结合反相液相色谱,这两个样品中的肽被分离,并通过基质辅助激光解吸电离飞行时间串联质谱(MALDI TOF-TOF)进行鉴定。利用基于氨基酸可能组合的算法模型,通过肽在不同组分中的带电氨基酸含量分析并解释了肽的分配图谱。我们还首次证明了等聚焦凝胶电泳分离技术与定量蛋白质组学标记技术iTRAQ的兼容性,从而能够将该技术纳入复杂样品的比较蛋白质组学工作流程。

结论

报告的数据表明,等聚焦凝胶电泳系统为从复杂的真核生物蛋白质组(血浆和分泌蛋白质组)中分离肽提供了一个非常有价值的工具,并且与iTRAQ标记定量研究兼容。因此,我们认为肽等聚焦凝胶电泳分离是我们策略的有效补充,也是定量蛋白质组学研究的重要系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d49/2277393/6a2f64505612/1477-5956-6-9-1.jpg

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