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Impact of Mass Spectrometry-Based Technologies andStrategies on Chemoproteomics as a Tool for Drug Discovery

机译:基于质谱技术的影响和化学蛋白质组学作为药物发现工具的策略

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摘要

Chemoproteomics is an invaluable tool to discover protein targets from phenotypic assays and to understand on- and off-target engagement of potential therapeutic compounds. Highlighted in this technology perspective is our view on how improvements in mass spectrometry (MS)-based proteomics technology have dramatically impacted chemoproteomics. Improvements in sample preparation, MS instrumentation, data acquisition, and quantification strategies have enabled medicinal chemists, chemical biologists, and mass spectrometrists to develop new chemoproteomic experiments and improve existing methods. As a result of improvements in MS, we will detail how bead-based affinity capture and activity-based proteome profiling methods have been reduced from multiple LC–MS runs for samples and controls down to a single LC–MS run each for sample and control. With improvements in scan duty cycle and sensitivity, sufficient depth of proteome coverage can be obtained for capture-free methods, which do not utilize an enrichment step.
机译:化学蛋白质组学是一种非常有用的工具,可以从表型分析中发现蛋白质靶标,并了解潜在治疗化合物的靶标和靶标脱离。在此技术观点中突出显示了我们对基于质谱(MS)的蛋白质组学技术的改进如何对化学蛋白质组学产生巨大影响的观点。样品制备,质谱仪仪器,数据采集和定量策略的改进使药物化学家,化学生物学家和质谱师能够开发新的化学旋转实验并改进现有方法。作为MS改进的结果,我们将详细介绍如何将基于珠子的亲和捕获和基于活性的蛋白质组谱分析方法从样品和对照的多个LC-MS运行降低为样品和对照的每个LC-MS运行。通过提高扫描占空比和灵敏度,可以为不采用富集步骤的无捕获方法获得足够的蛋白质组覆盖深度。

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