Journal article
Discovery of Potent 1,2,4-Triazole-Derived HIV Capsid Modulators with Dual-Stage Antiviral Activity via Targeting the Unexplored GTNQ Sub-Pocket Using a Multi-Site Binding Strategy
Journal of medicinal chemistry, Forthcoming
31 Jul 2026
Abstract
HIV capsid (CA) is a promising target for novel anti-HIV drugs. Using a structure-guided multisite binding strategy, we designed and synthesized 42 novel 1,2,4-triazole derivatives targeting the unexplored GTNQ subpocket within the CA hexamer. Compound 5-33d exhibited potent antiviral activity (EC50 = 0.14 μM), 12-fold more active than the lead compound PF74 (EC50 = 1.7 μM). Surface plasmon resonance (SPR) assay indicated that 5-33d exhibited potent binding affinities to the CA hexamer (KD = 59.0 nM), rather than the CA monomer (KD = 175.7 μM). The cocrystal structure demonstrated that the N-ethyl cyclopropanesulfonylamide moiety of 5-33d forms an extensive hydrogen-bond and water-mediated interaction network with key residues surrounding the GTNQ subpocket. Besides, 5-33d exerts dual-stage inhibition by disrupting CA-host binding and modulating capsid assembly. These findings lay a structural and mechanistic foundation for the development of anti-HIV candidates targeting the GTNQ subpocket.
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Details
- Title
- Discovery of Potent 1,2,4-Triazole-Derived HIV Capsid Modulators with Dual-Stage Antiviral Activity via Targeting the Unexplored GTNQ Sub-Pocket Using a Multi-Site Binding Strategy
- Creators
- Xiangyi Jiang - University of Science and CultureRuijie Yu - UNSW SydneyNicholas Foley - Drexel UniversityXiaojia Xue - University of Science and CultureJiaojiao Dai - University of Science and CultureMei Wang - University of Science and CultureZhangzhen Nie - University of Science and CultureChin-Ho ChenErik De Clercq - KU LeuvenChristophe Pannecouque - KU LeuvenDavid Jacques - UNSW SydneyAlexej Dick (Corresponding Author) - Drexel UniversityXinyong Liu - University of Science and CulturePeng Zhan - University of Science and Culture
- Publication Details
- Journal of medicinal chemistry, Forthcoming
- Publisher
- ACS Publications
- Number of pages
- 17
- Grant note
- Wallace H. Coulter Foundation: 284247 Postdoctoral Innovation Project of Shandong Province: SDZZ-ZR-202501359 National Basic Research Program of China (973 Program): 2023YFE0206500 Shandong Laboratory Program: NA National Natural Science Foundation of China (NSFC): 82173677
We gratefully acknowledge financial support from the Natural Science Foundation of China (NSFC No. 823B2092; 82173677), the Key Research and Development Program, Ministry of Science and Technology of the People's Republic of China (Grant No. 2023YFE0206500), the Shandong Laboratory Program (SYS202205), and the Postdoctoral Innovation Seed Program of Shandong Province (SDZZ-ZR-202501359). Alexej Dick and Nicholas Foley are supported by the Coulter Foundation Translational Fund (284247).
- Resource Type
- Journal article
- Language
- English
- Academic Unit
- Biochemistry and Molecular Biology
- Web of Science ID
- WOS:001838457100001
- Other Identifier
- 991022200757504721