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基于热蛋白质组 profiling 方法的药物靶标发现研究中,超快 MS1 蛋白质组学的实用性。

On the utility of ultrafast MS1-only proteomics in drug target discovery studies based on thermal proteome profiling method.

机构信息

V. L. Talrose Institute for Energy Problems of Chemical Physics, N. N. Semenov Federal Research Center for Chemical Physics, Russian Academy of Sciences, Leninsky Pr. 38, Bld.2, 119334, Moscow, Russia.

Moscow Center for Advanced Studies, Kulakova Str. 20, 123592, Moscow, Russia.

出版信息

Anal Bioanal Chem. 2024 Jul;416(18):4083-4089. doi: 10.1007/s00216-024-05330-9. Epub 2024 May 15.

Abstract

Advances in high-throughput high-resolution mass spectrometry and the development of thermal proteome profiling approach (TPP) have made it possible to accelerate a drug target search. Since its introduction in 2014, TPP quickly became a method of choice in chemical proteomics for identifying drug-to-protein interactions on a proteome-wide scale and mapping the pathways of these interactions, thus further elucidating the unknown mechanisms of action of a drug under study. However, the current TPP implementations based on tandem mass spectrometry (MS/MS), associated with employing lengthy peptide separation protocols and expensive labeling techniques for sample multiplexing, limit the scaling of this approach for the ever growing variety of drug-to-proteomes. A variety of ultrafast proteomics methods have been developed in the last couple of years. Among them, DirectMS1 provides MS/MS-free quantitative proteome-wide analysis in 5-min time scale, thus opening the way for sample-hungry applications, such as TPP. In this work, we demonstrate the first implementation of the TPP approach using the ultrafast proteome-wide analysis based on DirectMS1. Using a drug topotecan, which is a known topoisomerase I (TOP1) inhibitor, the feasibility of the method for identifying drug targets at the whole proteome level was demonstrated for an ovarian cancer cell line.

摘要

高通量高分辨率质谱和热蛋白质组分析方法(TPP)的发展使得加速药物靶点搜索成为可能。自 2014 年推出以来,TPP 迅速成为化学蛋白质组学中用于在全蛋白质组范围内识别药物-蛋白质相互作用并绘制这些相互作用途径的首选方法,从而进一步阐明研究中药物的未知作用机制。然而,目前基于串联质谱(MS/MS)的 TPP 实现方法,与采用冗长的肽分离方案和昂贵的标记技术进行样品多路复用相关联,限制了该方法对不断增长的各种药物-蛋白质组的扩展。在过去几年中已经开发了多种超快蛋白质组学方法。其中,DirectMS1 提供了在 5 分钟时间尺度内无 MS/MS 的定量全蛋白质组分析,从而为样品需求高的应用(如 TPP)开辟了道路。在这项工作中,我们展示了使用基于 DirectMS1 的超快全蛋白质组分析的 TPP 方法的首次实现。使用拓扑异构酶 I(TOP1)抑制剂拓扑替康作为药物,证明了该方法在卵巢癌细胞系中用于鉴定全蛋白质组水平药物靶点的可行性。

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