Photoaffinity labeling coupled to MS to identify peptide biological partners: Secondary reactions, for better or for worse?

IF 6.9 2区 化学 Q1 SPECTROSCOPY Mass Spectrometry Reviews Pub Date : 2024-04-05 DOI:10.1002/mas.21880
Astrid Walrant, Emmanuelle Sachon
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Abstract

Affinity photolabeling is a smart method to study noncovalent and transient interactions and provide a submolecular picture of the contacts between interacting partners. In this review, we will focus on the identification of peptide partners using photoaffinity labeling coupled to mass spectrometry in different contexts such as in vitro with a purified potential partner, in model systems such as model membranes, and with live cells using both targeted and nontargeted proteomics studies. Different biological partners will be described, among which glycoconjugates, oligonucleotides, peptides, proteins, and lipids, with the photoreactive label inserted either on the peptide of interest or on the potential partner. Particular attention will be paid to the observation and characterization of specific rearrangements following the photolabeling reaction, which can help characterize photoadducts and provide a better understanding of the interacting systems and environment.
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光亲和标记与 MS 联用,识别多肽生物伙伴:二次反应,是好是坏?
亲和光标记是一种研究非共价和瞬时相互作用的智能方法,可提供相互作用伙伴之间接触的亚分子图谱。在这篇综述中,我们将重点介绍在不同情况下使用光亲和标记结合质谱鉴定肽伴侣的方法,如在体外使用纯化的潜在伴侣,在模型系统(如模型膜)中使用,以及在活细胞中使用靶向和非靶向蛋白质组学研究。将介绍不同的生物伴侣,其中包括糖共轭物、寡核苷酸、肽、蛋白质和脂质,光活性标签可插入感兴趣的肽或潜在伴侣上。我们将特别关注光标记反应后特定重排的观察和特征描述,这有助于确定光加成物的特征,更好地了解相互作用的系统和环境。
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来源期刊
Mass Spectrometry Reviews
Mass Spectrometry Reviews 物理-光谱学
CiteScore
16.30
自引率
3.00%
发文量
56
期刊介绍: The aim of the journal Mass Spectrometry Reviews is to publish well-written reviews in selected topics in the various sub-fields of mass spectrometry as a means to summarize the research that has been performed in that area, to focus attention of other researchers, to critically review the published material, and to stimulate further research in that area. The scope of the published reviews include, but are not limited to topics, such as theoretical treatments, instrumental design, ionization methods, analyzers, detectors, application to the qualitative and quantitative analysis of various compounds or elements, basic ion chemistry and structure studies, ion energetic studies, and studies on biomolecules, polymers, etc.
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