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用于鉴定UCHL1共价抑制剂化学起始点的开源亲电片段筛选平台。

Open-source electrophilic fragment screening platform to identify chemical starting points for UCHL1 covalent inhibitors.

作者信息

Ficarro Scott B, Marto Zachary H, Girardi Nicholas M, Deng Dingyu, Maisonet Isabella Jaen, Adelmant Guillaume, Fleming Laura E, Sharafi Mona, Tavares Isidoro, Zhao Andrew, Kim HyoJeon, Seo Hyuk-Soo, Dhe-Paganon Sirano, Buhrlage Sara J, Marto Jarrod A

机构信息

Department of Cancer Biology and the Linde Program in Cancer Chemical Biology, Dana-Farber Cancer Institute, Boston, MA, USA; Blais Proteomics Center, Dana-Farber Cancer Institute, Boston, MA, USA; Center for Emergent Drug Targets, Dana-Farber Cancer Institute, Boston, MA, USA.

Department of Cancer Biology and the Linde Program in Cancer Chemical Biology, Dana-Farber Cancer Institute, Boston, MA, USA; Blais Proteomics Center, Dana-Farber Cancer Institute, Boston, MA, USA.

出版信息

SLAS Discov. 2024 Dec;29(8):100198. doi: 10.1016/j.slasd.2024.100198. Epub 2024 Nov 30.

Abstract

Target-based screening of covalent fragment libraries with mass spectrometry has emerged as a powerful strategy to identify chemical starting points for small molecule inhibitors or find new binding pockets on proteins of interest. These libraries span diverse chemical space with a modest number of compounds. Screening covalent fragments against purified protein targets reduces the demands on the mass spectrometer with respect to absolute throughput, detection limit, and dynamic range. Given these relaxed analytical requirements, we sought to develop an open-source, medium-throughput mass spectrometry system for target-based covalent fragment screening. Our platform comprises automated, dual LC desalting columns integrated with electrospray ionization for rapid sample introduction and mass spectrometry detection. The system is operated through a simple Python graphical user interface running on commodity microcontroller boards which allow integration with diverse liquid chromatography and mass spectrometry instruments. We provide scripts for fragment pooling, construction of sample batches, along with routines for data processing and visualization. The system enables primary screening of ∼10,000 covalent fragments per day in pooled format. In a proof-of-concept study we executed primary and secondary screens to identify 27 hit fragments against UCHL1, a deubiquitinating enzyme that is emerging as a drug target of interest across multiple clinical indications. We validated and triaged these covalent compounds through a series of orthogonal biochemical and chemoproteomic assays. The most promising chloroacetamide covalent fragment inhibited UCHL1 activity in vitro (IC < 5 µM) and exhibited dose-dependent binding along with good selectivity against 57 cellular DUBs as quantified by activity-based protein profiling.

摘要

基于质谱的共价片段文库靶向筛选已成为一种强大的策略,可用于识别小分子抑制剂的化学起始点或在感兴趣的蛋白质上寻找新的结合口袋。这些文库涵盖了不同的化学空间,化合物数量适中。针对纯化的蛋白质靶点筛选共价片段,可降低对质谱仪在绝对通量、检测限和动态范围方面的要求。鉴于这些放宽的分析要求,我们试图开发一种用于基于靶点的共价片段筛选的开源、中等通量质谱系统。我们的平台包括自动化的双液相色谱脱盐柱,与电喷雾电离相结合,用于快速进样和质谱检测。该系统通过运行在商用微控制器板上的简单Python图形用户界面进行操作,这允许与各种液相色谱和质谱仪器集成。我们提供了片段合并、样品批次构建的脚本,以及数据处理和可视化的程序。该系统能够以混合形式每天对约10,000个共价片段进行初筛。在一项概念验证研究中,我们进行了初筛和复筛,以鉴定出针对UCHL1的27个活性片段,UCHL1是一种去泛素化酶,在多种临床适应症中逐渐成为一个感兴趣的药物靶点。我们通过一系列正交生化和化学蛋白质组学分析对这些共价化合物进行了验证和分类。最有前景的氯乙酰胺共价片段在体外抑制UCHL1活性(IC < 5 µM),并且通过基于活性的蛋白质谱分析定量显示出剂量依赖性结合以及对57种细胞去泛素化酶具有良好的选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49a9/11702861/77e6fe34eb08/nihms-2042822-f0001.jpg

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