High-Throughput Determination of Exchange Rates of Unmodified and PTM-Containing Peptides Using HX-MS.

IF 6.1 2区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS
Molecular & Cellular Proteomics Pub Date : 2025-02-01 Epub Date: 2025-01-07 DOI:10.1016/j.mcpro.2025.100904
Jamie A Moroco, Alvaro Sebastian Vaca Jacome, Pierre Michel Jean Beltran, Andrew Reiter, Charlie Mundorff, Miklos Guttman, Jeff Morrow, Stephen Coales, Leland Mayne, Yoshitomo Hamuro, Steven A Carr, Malvina Papanastasiou
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引用次数: 0

Abstract

Despite the widespread use of MS for hydrogen/deuterium exchange measurements, no systematic, large-scale study has been conducted to compare the observed exchange rates in protein-derived, unstructured peptides measured by MS to the predicted exchange rates calculated from NMR-derived values and how neighboring residues and post-translational modifications influence those exchange rates. In this study, we sought to test the accuracy of predicted values by performing hydrogen exchange measurements on whole cell digests to generate an unbiased dataset of 563 unique peptides derived from naturally occurring protein sequences. A remarkable 97% of observed exchange rates of peptides are within two-fold of predicted values. Using fully deuterated controls, we found that for approximately 50% of the peptides, the amino acid sequence and, consequently, the intrinsic exchange rate, are the primary contributors to back exchange. A meta-analysis of the remaining physicochemical properties of peptides revealed multiple features that contribute either positively or negatively to back exchange discrepancies. Employing our workflow for comparable measurements on synthetic peptide mixtures containing post-translational modifications, and their unmodified counterparts, we show that lysine acetylation has a strong effect on the observed exchange rate, whereas serine/threonine phosphorylation does not. Our automated workflow enables high-throughput determination of exchange rates in complex biological peptide mixtures with diverse properties.

HX-MS高通量测定未修饰肽和含ptm肽的交换率。
尽管质谱广泛用于氢/氘交换测量,但目前还没有系统的、大规模的研究将质谱测量的蛋白质衍生的非结构化肽的观察交换率与核磁共振衍生值计算的预测交换率进行比较,以及邻近残基和翻译后修饰如何影响这些交换率。在这项研究中,我们试图通过对全细胞消化进行氢交换测量来测试预测值的准确性,以生成来自自然存在的蛋白质序列的563个独特肽的无偏数据集。97%的观察到的多肽交换率在预测值的两倍之内。使用完全氘化对照,我们发现对于大约50%的肽,氨基酸序列和内在交换速率是反向交换的主要贡献者。对剩余肽的物理化学性质进行的荟萃分析揭示了对回交换差异有积极或消极影响的多种特征。利用我们的工作流程对含有翻译后修饰的合成肽混合物和未修饰的合成肽混合物进行比较测量,我们发现赖氨酸乙酰化对观察到的汇率有很强的影响,而丝氨酸/苏氨酸磷酸化则没有。我们的自动化工作流程能够高通量测定具有不同性质的复杂生物多肽混合物的汇率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular & Cellular Proteomics
Molecular & Cellular Proteomics 生物-生化研究方法
CiteScore
11.50
自引率
4.30%
发文量
131
审稿时长
84 days
期刊介绍: The mission of MCP is to foster the development and applications of proteomics in both basic and translational research. MCP will publish manuscripts that report significant new biological or clinical discoveries underpinned by proteomic observations across all kingdoms of life. Manuscripts must define the biological roles played by the proteins investigated or their mechanisms of action. The journal also emphasizes articles that describe innovative new computational methods and technological advancements that will enable future discoveries. Manuscripts describing such approaches do not have to include a solution to a biological problem, but must demonstrate that the technology works as described, is reproducible and is appropriate to uncover yet unknown protein/proteome function or properties using relevant model systems or publicly available data. Scope: -Fundamental studies in biology, including integrative "omics" studies, that provide mechanistic insights -Novel experimental and computational technologies -Proteogenomic data integration and analysis that enable greater understanding of physiology and disease processes -Pathway and network analyses of signaling that focus on the roles of post-translational modifications -Studies of proteome dynamics and quality controls, and their roles in disease -Studies of evolutionary processes effecting proteome dynamics, quality and regulation -Chemical proteomics, including mechanisms of drug action -Proteomics of the immune system and antigen presentation/recognition -Microbiome proteomics, host-microbe and host-pathogen interactions, and their roles in health and disease -Clinical and translational studies of human diseases -Metabolomics to understand functional connections between genes, proteins and phenotypes
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