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iFASP:将等压质量标记与过滤辅助样品制备相结合。

iFASP: combining isobaric mass tagging with filter-aided sample preparation.

机构信息

Proteomics Center and Department of Pathology, Boston Children's Hospital, Boston, Massachusetts 02115, USA.

出版信息

J Proteome Res. 2013 Aug 2;12(8):3809-12. doi: 10.1021/pr400032m. Epub 2013 Jul 22.

Abstract

Careful, clean and controlled preparation of samples for mass spectrometry proteomics is crucial to obtain reproducible and reliable data. This is especially important when carrying out quantitative proteomics by chemical isobaric labeling (aka tandem mass tagging), since the differentially labeled samples are combined quite late during the sample processing. Addressing this need for robust and reliable sample processing for quantitative proteomics, we describe here iFASP, a simple protocol for combining isobaric mass tagging with the recently introduced filter-aided sample preparation (FASP) method. iFASP provides a quick, simple and effective method for obtaining clean samples, ensuring efficient digestion and providing excellent labeling yields for quantitative proteomics experiments. We have carried out our iFASP protocol using several highly complex Xenopus laevis egg and embryo lysates and compared the labeling yields and number of high-confidence peptide identifications to a standard in-solution digestion and labeling protocol. Although the labeling efficiency with both techniques is in the 99+% range, the number of peptides identified with a 1% false discovery rate and the corresponding number of quantified peptide spectral matches are as much as doubled with iFASP compared to the corresponding non-FASP-based method.

摘要

精心、清洁且受控的样品制备对于质谱蛋白质组学至关重要,这是获得可重复和可靠数据的关键。当通过化学等质量标记(又名串联质量标记)进行定量蛋白质组学研究时,这一点尤为重要,因为差异标记的样品在样品处理过程中很晚才进行组合。为了满足定量蛋白质组学中对稳健可靠的样品处理的需求,我们在这里描述了 iFASP,这是一种将等质量标记与最近引入的过滤辅助样品制备(FASP)方法相结合的简单方案。iFASP 提供了一种快速、简单且有效的方法来获得清洁的样品,确保高效消化,并为定量蛋白质组学实验提供优异的标记产率。我们已经使用几种高度复杂的非洲爪蟾卵和胚胎裂解物进行了 iFASP 方案,并将标记产率和高可信度肽鉴定数量与标准的溶液内消化和标记方案进行了比较。尽管两种技术的标记效率都在 99%以上,但与非 FASP 方法相比,iFASP 可将具有 1%假发现率的肽数量和相应的定量肽谱匹配数量提高一倍。

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