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探索化学反应在酪氨酸激酶抑制剂选择性中的作用。

Exploring the Role of Chemical Reactions in the Selectivity of Tyrosine Kinase Inhibitors.

机构信息

Department of Chemistry, University of Southern California, Los Angeles, California90089-1062, United States.

出版信息

J Am Chem Soc. 2022 Sep 14;144(36):16638-16646. doi: 10.1021/jacs.2c07307. Epub 2022 Aug 31.

Abstract

A variety of diseases are associated with tyrosine kinase enzymes that activate many proteins via signal transduction cascades. The similar ATP-binding pockets of these tyrosine kinases make it extremely difficult to design selective covalent inhibitors. The present study explores the contribution of the chemical reaction steps to the selectivity of the commercialized inhibitor acalabrutinib over the Bruton's tyrosine kinase (BTK) and the interleukin-2-inducible T-cell kinase (ITK). Ab initio and empirical valence bond (EVB) simulations of the two kinases indicate that the most favorable reaction path involves a water-assisted mechanism of the 2-butynamide reactive group of acalabrutinib. BTK reacts with acalabrutinib with a substantially lower barrier than ITK, according to our calculated free-energy profile and kinetic simulations. Such a difference is due to the microenvironment of the active site, as further supported by a sequence-based analysis of specificity determinants for several commercialized inhibitors. Our study involves a new approach of simulating directly the IC50 and inactivation efficiency , instead of using the standard formulas. This new strategy is particularly important in studies of covalent inhibitors with a very exothermic bonding step. Overall, our results demonstrate the importance of understanding the chemical reaction steps in designing selective covalent inhibitors for tyrosine kinases.

摘要

多种疾病与酪氨酸激酶酶有关,这些酶通过信号转导级联激活许多蛋白质。这些酪氨酸激酶的相似的 ATP 结合口袋使得设计选择性共价抑制剂变得极其困难。本研究探讨了化学反应步骤对已商业化抑制剂阿卡鲁替尼对布鲁顿酪氨酸激酶(BTK)和白细胞介素-2 诱导的 T 细胞激酶(ITK)选择性的贡献。对这两种激酶的从头算和经验价键(EVB)模拟表明,最有利的反应途径涉及阿卡鲁替尼的 2-丁酰胺反应基团的水辅助机制。根据我们计算的自由能曲线和动力学模拟,BTK 与阿卡鲁替尼的反应比 ITK 具有低得多的势垒。这种差异归因于活性位点的微环境,这进一步得到了对几种商业化抑制剂特异性决定因素的基于序列的分析的支持。我们的研究涉及一种直接模拟 IC50 和失活效率的新方法,而不是使用标准公式。对于具有非常放热键合步骤的共价抑制剂的研究,这种新策略尤为重要。总体而言,我们的研究结果表明,在设计针对酪氨酸激酶的选择性共价抑制剂时,了解化学反应步骤的重要性。

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