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通过分子对接、分子动力学模拟和结合自由能计算剖析对映体抑制剂对泛素特异性蛋白酶7(USP7)的立体选择性。

Stereo-selectivity of enantiomeric inhibitors to ubiquitin-specific protease 7 (USP7) dissected by molecular docking, molecular dynamics simulations, and binding free energy calculations.

作者信息

Zhang Yusheng, Dou Wenwen, Zhao Ziqi, Li Guozhen, Li Chunlong, Chen Xiangyu, Mou Linkai

机构信息

Department of Urology, Affiliated Hospital of Shandong Second Medical University, Shandong Second Medical University, Weifang, 261031, Shandong, China.

Department of Infectious Diseases, Affiliated Hospital of Shandong Second Medical University, Shandong Second Medical University, Weifang, 261031, Shandong, China.

出版信息

Mol Divers. 2025 Apr;29(2):1725-1735. doi: 10.1007/s11030-024-10948-z. Epub 2024 Sep 19.

Abstract

The ubiquitin-specific protease 7 (USP7), as a member of deubiquitination enzymes, represents an attractive therapeutic target for various cancers, including prostate cancer and liver cancer. The change of the inhibitor stereocenter from the S to R stereochemistry (S-ALM → R-ALM34) markedly improved USP7 inhibitory activity. However, the molecular mechanism for the stereo-selectivity of enantiomeric inhibitors to USP7 is still unclear. In this work, molecular docking, molecular dynamics (MD) simulations, molecular mechanics/Generalized-Born surface area (MM/GBSA) calculations, and free energy landscapes were performed to address this mystery. MD simulations revealed that S-ALM34 showed a high degree of conformational flexibility compared to the R-ALM34 counterpart, and S-ALM34 binding led to the enhanced intradomain motions of USP7, especially the BL1 and BL2 loops and the two helices α4 and α5. MM/GBSA calculations showed that the binding strength of R-ALM34 to USP7 was stronger than that of S-ALM34 by - 4.99 kcal/mol, a similar trend observed by experimental data. MM/GBSA free energy decomposition was further performed to differentiate the ligand-residue spectrum. These analyses not only identified the hotspot residues interacting with R-ALM34, but also revealed that the hydrophobic interactions from F409, K420, H456, and Y514 play the major determinants in the binding of R-ALM34 to USP7. This result is anticipated to shed light on energetic basis and conformational dynamics information to aid in the design of more potent and selective inhibitors targeting USP7.

摘要

泛素特异性蛋白酶7(USP7)作为去泛素化酶家族的一员,是包括前列腺癌和肝癌在内的多种癌症颇具吸引力的治疗靶点。抑制剂立体中心从S构型转变为R构型(S-ALM→R-ALM34)显著提高了USP7的抑制活性。然而,对映体抑制剂对USP7的立体选择性分子机制仍不清楚。在这项工作中,进行了分子对接、分子动力学(MD)模拟、分子力学/广义玻恩表面积(MM/GBSA)计算和自由能景观分析来解开这个谜团。MD模拟显示,与R-ALM34相比,S-ALM34表现出高度的构象灵活性,并且S-ALM34的结合导致USP7的结构域内运动增强,尤其是BL1和BL2环以及α4和α5这两个螺旋。MM/GBSA计算表明,R-ALM34与USP7的结合强度比S-ALM34强4.99 kcal/mol,实验数据也观察到了类似趋势。进一步进行MM/GBSA自由能分解以区分配体-残基谱。这些分析不仅确定了与R-ALM34相互作用的热点残基,还揭示了F409、K420、H456和Y514的疏水相互作用在R-ALM34与USP7的结合中起主要决定作用。这一结果有望为能量基础和构象动力学信息提供线索,以帮助设计更有效、更具选择性的靶向USP7的抑制剂。

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