Department of Pharmacology and Yale Cancer Biology Institute, Yale University School of Medicine, West Haven, CT, United States.
Department of Pharmacology and Yale Cancer Biology Institute, Yale University School of Medicine, West Haven, CT, United States.
Methods Enzymol. 2022;667:303-338. doi: 10.1016/bs.mie.2022.03.037. Epub 2022 Apr 8.
Dynamics of the protein kinase fold are deeply intertwined with its structure. The past three decades of kinase biophysical studies revealed key dynamic features of the kinase domain and, more recently, how these features may endow catalytically impaired kinases-or pseudokinases-with signaling properties. Hydrogen-deuterium exchange coupled with mass spectrometry (HDX-MS) is proving to be a valuable approach for studies of kinase and pseudokinase domain dynamics. Here, we briefly discuss the methods that have provided insights into protein kinase dynamics, describe how HDX-MS is being used to answer questions in the kinase/pseudokinase field, and provide a detailed protocol for collecting an HDX-MS dataset to study the impacts of small molecule binding to a pseudokinase domain. As more small molecules are discovered that can disrupt pseudokinase conformations, HDX-MS is likely to be a powerful approach for exploring drug-induced changes in pseudokinase dynamics and structure.
蛋白质激酶折叠的动力学与其结构紧密交织。过去三十年的激酶生物物理研究揭示了激酶结构域的关键动力学特征,最近还揭示了这些特征如何赋予催化功能受损的激酶或伪激酶具有信号转导特性。氢氘交换与质谱联用(HDX-MS)被证明是研究激酶和伪激酶结构域动力学的一种有价值的方法。在这里,我们简要讨论了提供有关蛋白激酶动力学见解的方法,描述了如何将 HDX-MS 用于回答激酶/伪激酶领域的问题,并提供了一个详细的方案,用于收集 HDX-MS 数据集以研究小分子结合对伪激酶结构域的影响。随着更多可以破坏伪激酶构象的小分子被发现,HDX-MS 很可能成为探索药物诱导的伪激酶动力学和结构变化的有力方法。