Dynamic Cap-Mediated Substrate Access and Potent Inhibitor Design of Monkeypox Virus I7L Protease
2025-04-01
发表期刊ADVANCED SCIENCE (IF:14.3[JCR-2023],16.3[5-Year])
ISSN2198-3844
EISSN2198-3844
发表状态已发表
DOI10.1002/advs.202501625
摘要

Monkeypox virus (MPXV), an orthopoxvirus that has long been endemic in Africa, has posed a significant global health threat since 2022. The I7L protease, a highly conserved cysteine proteinase essential for orthopoxvirus replication, represents a promising target for broad-spectrum antiviral drug development. Here, the first crystal structure of MPXV I7L protease is reported, revealing its unique dimeric form and different conformations of a cap region nearby the active site. Molecular dynamics simulations and AlphaFold3 prediction of protease-substrate structures both suggest that this highly flexible cap acts as a conformational switch, regulating the substrate access to the active site. Additionally, the structural basis of substrate recognition and the catalytic mechanism of the protease are elucidated, mapping determinants of substrate specificity. These insights enable us to design covalent inhibitors to mimic the natural substrates and develop a fluorescence resonance energy transfer (FRET)-based protease assay to effectively assess the inhibitory activity, leading to the discovery of first-in-class inhibitors of MPXV I7L protease with nanomolar potency. Therefore, this work provides a comprehensive understanding of the MPXV I7L protease's structure, dynamics, and function, and presents an example of successful rational design of covalent peptidomimetic inhibitors, serving as a good starting point for drug development against MPXV.

关键词covalent inhibitors I7L protease monkeypox virus protein structures substrate proteolysis
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收录类别SCI ; EI
语种英语
资助项目Strategic Priority Research Program of the Chinese Academy of Sciences[XDB0830000] ; Research Program of Shanghai Institute of Materia Medica, Chinese Academy of Sciences[
WOS研究方向Chemistry ; Science & Technology - Other Topics ; Materials Science
WOS类目Chemistry, Multidisciplinary ; Nanoscience & Nanotechnology ; Materials Science, Multidisciplinary
WOS记录号WOS:001460494300001
出版者WILEY
EI入藏号20251518211644
EI主题词Conformations
EI分类号103 Biology ; 801.1 Biochemistry ; 801.3 Physical Chemistry ; 1201 Mathematics
原始文献类型Article in Press
文献类型期刊论文
条目标识符https://kms.shanghaitech.edu.cn/handle/2MSLDSTB/510501
专题物质科学与技术学院
物质科学与技术学院_博士生
共同第一作者Wu, Guoqing
通讯作者Zhang, Leike; Shao, Qiang; Xu, Yechun
作者单位
1.Chinese Acad Sci, Shanghai Inst Mat Med, State Key Lab Drug Res, Shanghai 201203, Peoples R China
2.Univ Chinese Acad Sci, Beijing 100049, Peoples R China
3.Lingang Lab, Shanghai 200031, Peoples R China
4.ShanghaiTech Univ, Sch Phys Sci & Technol, Shanghai 201210, Peoples R China
5.Univ Chinese Acad Sci, Hangzhou Inst Adv Study, Sch Pharmaceut Sci & Technol, Hangzhou 310024, Peoples R China
6.Nanjing Univ Chinese Med, Sch Chinese Mat Med, Nanjing 210023, Peoples R China
7.Chinese Acad Sci, Wuhan Inst Virol, Ctr Biosafety Mega Sci, CAS Key Lab Special Pathogens, Wuhan 430064, Peoples R China
8.Hubei Jiangxia Lab, Wuhan 430200, Peoples R China
9.Chinese Acad Sci, Shanghai Adv Res Inst, Shanghai Synchrotron Radiat Facil, Shanghai 201204, Peoples R China
推荐引用方式
GB/T 7714
Su, Haixia,Wu, Guoqing,Xiong, Muya,et al. Dynamic Cap-Mediated Substrate Access and Potent Inhibitor Design of Monkeypox Virus I7L Protease[J]. ADVANCED SCIENCE,2025.
APA Su, Haixia.,Wu, Guoqing.,Xiong, Muya.,Wang, Yuhang.,Cao, Junyuan.,...&Xu, Yechun.(2025).Dynamic Cap-Mediated Substrate Access and Potent Inhibitor Design of Monkeypox Virus I7L Protease.ADVANCED SCIENCE.
MLA Su, Haixia,et al."Dynamic Cap-Mediated Substrate Access and Potent Inhibitor Design of Monkeypox Virus I7L Protease".ADVANCED SCIENCE (2025).
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