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菌株特异性肽(SSP)干扰参考样本:用于等压标记策略的基因编码质量控制

Strain-Specific Peptide (SSP) Interference Reference Sample: A Genetically Encoded Quality Control for Isobaric Tagging Strategies.

作者信息

Zhang Tian, Keele Greg R, Churchill Gary A, Gygi Steven P, Paulo Joao A

机构信息

Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, United States.

The Jackson Laboratory, Bar Harbor, Maine 04609, United States.

出版信息

Anal Chem. 2021 Mar 30;93(12):5241-5247. doi: 10.1021/acs.analchem.0c05483. Epub 2021 Mar 18.

Abstract

Isobaric tag-based sample multiplexing strategies are extensively used for global protein abundance profiling. However, such analyses are often confounded by ratio compression resulting from the co-isolation, co-fragmentation, and co-quantification of co-eluting peptides, termed "interference." Recent analytical strategies incorporating ion mobility and real-time database searching have helped to alleviate interference, yet further assessment is needed. Here, we present the strain-specific peptide (SSP) interference reference sample, a tandem mass tag (TMT)pro-labeled quality control that leverages the genetic variation in the proteomes of eight phylogenetically divergent mouse strains. Typically, a peptide with a missense mutation has a different mass and retention time than the reference or native peptide. TMT reporter ion signal for the native peptide in strains that encode the mutant peptide suggests interference which can be quantified and assessed using the interference-free index (IFI). We introduce the SSP by investigating interference in three common data acquisition methods and by showcasing improvements in the IFI when using ion mobility-based gas-phase fractionation. In addition, we provide a user-friendly, online viewer to visualize the data and streamline the calculation of the IFI. The SSP will aid in developing and optimizing isobaric tag-based experiments.

摘要

基于等压标签的样本多重分析策略被广泛用于全球蛋白质丰度分析。然而,此类分析常常因共洗脱肽段的共分离、共碎片化和共定量所导致的比率压缩(称为“干扰”)而变得复杂。最近结合离子淌度和实时数据库搜索的分析策略有助于减轻干扰,但仍需进一步评估。在此,我们介绍了菌株特异性肽(SSP)干扰参考样本,这是一种串联质谱标签(TMT)预标记的质量控制方法,它利用了八个系统发育上不同的小鼠品系蛋白质组中的遗传变异。通常,具有错义突变的肽段与参考肽段或天然肽段相比,具有不同的质量和保留时间。在编码突变肽段的品系中,天然肽段的TMT报告离子信号表明存在干扰,可使用无干扰指数(IFI)进行量化和评估。我们通过研究三种常见数据采集方法中的干扰,并展示使用基于离子淌度的气相分级时IFI的改善情况,来介绍SSP。此外,我们提供了一个用户友好的在线查看器,以可视化数据并简化IFI的计算。SSP将有助于开发和优化基于等压标签的实验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0a3/8210951/11d8b297cb81/nihms-1710098-f0002.jpg

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