Cellzome GmbH, GlaxoSmithKline (GSK), Heidelberg, Germany.
Methods Mol Biol. 2023;2718:73-98. doi: 10.1007/978-1-0716-3457-8_5.
Proteins are central drivers of physiological and pathological processes in the cell. Methods evaluating protein functional states are therefore vital to fundamental research as well as drug discovery. Thermal proteome profiling (TPP) to this date constitutes the only approach that permits examining protein states in live cells, under native conditions and at a proteome-wide scale. TPP harnesses ligand/perturbation-induced changes in protein thermal stability, which are monitored by multiplexed quantitative mass spectrometry. In this chapter, we describe a modular experimental workflow for TPP experiments using live cells or crude cell extracts. We provide the tools to perform different TPP formats, i.e., temperature range experiments, TPP-TR; isothermal compound titrations, TPP-CCR; and a combination thereof, 2D-TPP.
蛋白质是细胞生理和病理过程的核心驱动力。因此,评估蛋白质功能状态的方法对于基础研究和药物发现至关重要。到目前为止,热蛋白质组学分析(TPP)是唯一一种允许在活细胞中、在天然条件下和在全蛋白质组范围内检测蛋白质状态的方法。TPP 利用配体/扰动诱导的蛋白质热稳定性变化,这些变化通过多重定量质谱监测。在本章中,我们描述了使用活细胞或粗细胞提取物进行 TPP 实验的模块化实验工作流程。我们提供了执行不同 TPP 格式的工具,即温度范围实验、TPP-TR;等温化合物滴定、TPP-CCR;以及它们的组合,二维 TPP。