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深入了解抑制剂对高同源性激酶 STK17A 中的暗激酶 STK17B 的选择性作用机制。

Mechanistic Insights into the Mechanism of Inhibitor Selectivity toward the Dark Kinase STK17B against Its High Homology STK17A.

机构信息

Department of Hepatic Surgery VI, Eastern Hepatobiliary Surgery Hospital, Second Military Medical University, Shanghai 200433, China.

Department of Transplantation, Xinhua Hospital Affiliated to Shanghai Jiao Tong University, School of Medicine, Shanghai 200092, China.

出版信息

Molecules. 2022 Jul 21;27(14):4655. doi: 10.3390/molecules27144655.

Abstract

As a member of the death-associated protein kinase (DAPK) family, STK17B plays an important role in the regulation of cellular apoptosis and has been considered as a promising drug target for hepatocellular carcinoma. However, the highly conserved ATP-binding site of protein kinases represents a challenge to design selective inhibitors for a specific DAPK isoform. In this study, molecular docking, multiple large-scale molecular dynamics (MD) simulations, and binding free energy calculations were performed to decipher the molecular mechanism of the binding selectivity of PKIS43 toward STK17B against its high homology STK17A. MD simulations revealed that STK17A underwent a significant conformational arrangement of the activation loop compared to STK17B. The binding free energy predictions suggested that the driving force to control the binding selectivity of PKIS43 was derived from the difference in the protein-ligand electrostatic interactions. Furthermore, the per-residue free energy decomposition unveiled that the energy contribution from Arg41 at the phosphate-binding loop of STK17B was the determinant factor responsible for the binding specificity of PKIS43. This study may provide useful information for the rational design of novel and potent selective inhibitors toward STK17B.

摘要

作为死亡相关蛋白激酶(DAPK)家族的一员,STK17B 在细胞凋亡的调节中发挥着重要作用,并且被认为是肝细胞癌有前途的药物靶点。然而,蛋白激酶的高度保守的 ATP 结合位点使得设计针对特定 DAPK 同工型的选择性抑制剂成为一个挑战。在这项研究中,进行了分子对接、多个大规模分子动力学(MD)模拟和结合自由能计算,以解析 PKIS43 对 STK17B 的结合选择性的分子机制,而 STK17B 与其高度同源的 STK17A 相比。MD 模拟表明,与 STK17B 相比,STK17A 的激活环发生了显著的构象排列。结合自由能预测表明,控制 PKIS43 结合选择性的驱动力来自于蛋白-配体静电相互作用的差异。此外,残基自由能分解表明,STK17B 的磷酸结合环上的 Arg41 的能量贡献是决定 PKIS43 结合特异性的决定因素。这项研究可能为设计针对 STK17B 的新型有效选择性抑制剂提供有用的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e96f/9317881/475a2a0210b5/molecules-27-04655-g001.jpg

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