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QM/MM 和分子动力学研究 TAK1 激酶共价抑制机制。

QM/MM and molecular dynamics investigation of the mechanism of covalent inhibition of TAK1 kinase.

机构信息

Department of Chemistry, Faculty of Science, Kasetsart University, Bangkok 10900, Thailand.

出版信息

Org Biomol Chem. 2021 Feb 14;19(6):1412-1425. doi: 10.1039/d0ob02273j. Epub 2021 Jan 27.

Abstract

TAK1 is a serine/threonine kinase which is involved in the moderation of cell survival and death via the TNFα signalling pathway. It is also implicated in a range of cancer and anti-inflammatory diseases. Drug discovery efforts on this target have focused on both traditional reversible ATP-binding site inhibitors and increasingly popular irreversible covalent binding inhibitors. Irreversible inhibitors can offer benefits in terms of potency, selectivity and PK/PD meaning they are increasingly pursued where the strategy exists. TAK1 kinase differs from the better-known kinase EGFR in that the reactive cysteine nucleophile targeted by electrophilic inhibitors is located towards the back of the ATP binding site, not at its mouth. While a wealth of structural and computational effort has been spent exploring EGFR, only limited studies on TAK1 have been reported. In this work we report the first QM/MM study on TAK1 aiming to better understand aspects of covalent adduct formation. Our goal is to identify the general base in the catalytic reaction, whether the process proceeds via a stepwise or concerted pathway, and how the highly flexible G-loop and A-loop affect the catalytic cysteine located nearby.

摘要

TAK1 是一种丝氨酸/苏氨酸激酶,通过 TNFα 信号通路参与细胞存活和死亡的调节。它还与多种癌症和抗炎性疾病有关。该靶点的药物发现工作集中在传统的可逆 ATP 结合位点抑制剂和越来越流行的不可逆共价结合抑制剂上。不可逆抑制剂在效力、选择性和 PK/PD 方面具有优势,因此在存在策略的情况下,它们越来越受到关注。TAK1 激酶与更著名的激酶 EGFR 不同,因为亲电抑制剂靶向的反应性半胱氨酸亲核试剂位于 ATP 结合位点的背面,而不是在其口中。虽然已经花费了大量的结构和计算资源来研究 EGFR,但仅对 TAK1 进行了有限的研究。在这项工作中,我们报告了第一个针对 TAK1 的 QM/MM 研究,旨在更好地理解共价加合物形成的各个方面。我们的目标是确定催化反应中的通用碱,该过程是通过逐步途径还是协同途径进行,以及高度灵活的 G 环和 A 环如何影响附近的催化半胱氨酸。

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