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通过二维部分协方差质谱鉴定共碎裂组合肽异构体。

Identification of Cofragmented Combinatorial Peptide Isomers by Two-Dimensional Partial Covariance Mass Spectrometry.

机构信息

Department of Physics, Imperial College London, London SW7 2AZ, U.K.

Department of Translational Immunology, German Cancer Research Centre, INF 580, 69120 Heidelberg, Germany.

出版信息

J Am Soc Mass Spectrom. 2023 Jul 5;34(7):1230-1234. doi: 10.1021/jasms.3c00111. Epub 2023 May 30.

Abstract

Combinatorial post-translational modifications (PTMs), such as those forming the so-called "histone code", have been linked to cell differentiation, embryonic development, cellular reprogramming, aging, cancers, neurodegenerative disorders, . Nevertheless, a reliable mass spectral analysis of the combinatorial isomers represents a considerable challenge. The difficulty stems from the incompleteness of information that could be generated by the standard MS to differentiate cofragmented isomeric sequences in their naturally occurring mixtures based on the fragment mass-to-charge ratio and relative abundance information only. Here we show that fragment-fragment correlations revealed by two-dimensional partial covariance mass spectrometry (2D-PC-MS) allow one to solve the combinatorial PTM puzzles that cannot be tackled by the standard MS as a matter of principle. We introduce 2D-PC-MS marker ion correlation approach and demonstrate experimentally that it can provide the missing information enabling identification of cofragmentated combinatorially modified isomers. Our study shows that the marker ion correlations can be used to unambiguously identify 5 times more cofragmented combinatorially acetylated tryptic peptides and 3 times more combinatorially modified Glu-C peptides of human histones than is possible using standard MS methods.

摘要

组合翻译后修饰(PTMs),如形成所谓的“组蛋白密码”,与细胞分化、胚胎发育、细胞重编程、衰老、癌症、神经退行性疾病等有关。然而,对组合异构体进行可靠的质谱分析仍然是一个巨大的挑战。困难源于标准 MS 生成的信息不完整,仅基于片段质荷比和相对丰度信息,无法区分天然混合物中碎裂的异构序列。在这里,我们展示了二维部分协方差质谱(2D-PC-MS)揭示的片段-片段相关性,可以解决标准 MS 原则上无法解决的组合 PTM 难题。我们引入了 2D-PC-MS 标记离子相关方法,并通过实验证明,它可以提供缺失的信息,从而能够鉴定碎裂的组合修饰异构体。我们的研究表明,标记离子相关性可用于明确鉴定 5 倍更多的碎裂的组合乙酰化胰蛋白酶肽和 3 倍更多的组合修饰的 Glu-C 肽,这比使用标准 MS 方法更有可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd85/10326914/57739d5790e3/js3c00111_0001.jpg

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