用于捕获药物靶蛋白和靶点的恒温辅助有限蛋白水解耦合质谱法

IF 5.7 2区 化学 Q1 CHEMISTRY, ANALYTICAL
Liu Yang , Chen-Wan Guo , Qi-Ming Luo , Zi-Fan Guo , Ling Chen , Yasushi Ishihama , Ping Li , Hua Yang , Wen Gao
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引用次数: 0

摘要

背景确定药物结合靶点及其相应位点对于药物发现和机理研究至关重要。有限蛋白水解耦合质谱(LiP-MS)是一种用于检测化合物与蛋白质相互作用的复杂方法。然而,在某些情况下,由于结构变化较小或缺乏对低丰度蛋白质的富集,LiP-MS 无法识别目标蛋白质。结果证明,TALiP-MS 这一新策略能有效识别各种配体的靶蛋白,包括环孢素 A(一种钙神经蛋白抑制剂)、格尔丹霉素(一种 HSP90 抑制剂)和staurosporine(一种激酶抑制剂),并能准确识别药物结合结构域。TALiP 方案使 LiP-MS 实验中检测到的目标肽的数量增加了 2 到 8 倍。同时,TALiP-MS 方法不仅能识别配体结合稳定性蛋白和失稳蛋白,而且与热蛋白质组图谱(TPP)和基于机器学习的有限蛋白质分解(LiP-Quant)方法具有很高的互补性。所开发的 TALiP-MS 方法被用于鉴定西司他醇(CEL)的靶蛋白,西司他醇是一种天然产品,具有很强的抗氧化和抗癌血管生成作用。其中,MTHFD1、UBA1、ACLY 和 SND1 四种蛋白质与 CEL 的强亲和力通过细胞热转移试验得到了进一步验证。总体而言,这些研究结果凸显了 TALiP-MS 方法在复杂蛋白质组中鉴定药物靶点、阐明结合位点甚至检测药物诱导的靶蛋白构象变化方面的功效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Thermostability-assisted limited proteolysis-coupled mass spectrometry for capturing drug target proteins and sites

Thermostability-assisted limited proteolysis-coupled mass spectrometry for capturing drug target proteins and sites

Thermostability-assisted limited proteolysis-coupled mass spectrometry for capturing drug target proteins and sites

Background

Identifying drug-binding targets and their corresponding sites is crucial for drug discovery and mechanism studies. Limited proteolysis-coupled mass spectrometry (LiP-MS) is a sophisticated method used for the detection of compound and protein interactions. However, in some cases, LiP-MS cannot identify the target proteins due to the small structure changes or the lack of enrichment of low-abundant protein. To overcome this drawback, we developed a thermostability-assisted limited proteolysis-coupled mass spectrometry (TALiP-MS) approach for efficient drug target discovery.

Results

We proved that the novel strategy, TALiP-MS, could efficiently identify target proteins of various ligands, including cyclosporin A (a calcineurin inhibitor), geldanamycin (an HSP90 inhibitor), and staurosporine (a kinase inhibitor), with accurately recognizing drug-binding domains. The TALiP protocol increased the number of target peptides detected in LiP-MS experiments by 2- to 8-fold. Meanwhile, the TALiP-MS approach can not only identify both ligand-binding stability and destabilization proteins but also shows high complementarity with the thermal proteome profiling (TPP) and machine learning-based limited proteolysis (LiP-Quant) methods. The developed TALiP-MS approach was applied to identify the target proteins of celastrol (CEL), a natural product known for its strong antioxidant and anti-cancer angiogenesis effect. Among them, four proteins, MTHFD1, UBA1, ACLY, and SND1 were further validated for their strong affinity to CEL by using cellular thermal shift assay. Additionally, the destabilized proteins induced by CEL such as TAGLN2 and CFL1 were also validated.

Significance

Collectively, these findings underscore the efficacy of the TALiP-MS method for identifying drug targets, elucidating binding sites, and even detecting drug-induced conformational changes in target proteins in complex proteomes.

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来源期刊
Analytica Chimica Acta
Analytica Chimica Acta 化学-分析化学
CiteScore
10.40
自引率
6.50%
发文量
1081
审稿时长
38 days
期刊介绍: Analytica Chimica Acta has an open access mirror journal Analytica Chimica Acta: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review. Analytica Chimica Acta provides a forum for the rapid publication of original research, and critical, comprehensive reviews dealing with all aspects of fundamental and applied modern analytical chemistry. The journal welcomes the submission of research papers which report studies concerning the development of new and significant analytical methodologies. In determining the suitability of submitted articles for publication, particular scrutiny will be placed on the degree of novelty and impact of the research and the extent to which it adds to the existing body of knowledge in analytical chemistry.
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