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◆ European journal of medicinal chemistry2026-08-26

Structure-based virtual screening leads to the discovery of a 4,5-dihydropyrazole derivative as the first dual inhibitor of West Nile virus NS3 helicase and protease.

Antonio Lupia, Roberta Emmolo, Giulia Atzeni, Erica Sanna, Salvatore Nieddu, Alessia Onali, Laura Demuru, Annalaura Paulis, Simona Distinto, Angela Corona, Francesca Esposito, Rita Meleddu, Filippo Cottiglia, Sharon D Bryant, Elias Maccioni, Enzo Tramontano

原始摘要(英文原文)· Original abstract
West Nile Virus (WNV) non-structural protein 3 (NS3) is a multifunctional enzyme critical for viral replication and represents a highly well-conserved antiviral target. NS3 consists of an N-terminal serine protease (NS3pro), which relies on the NS2B cofactor for polyprotein processing, and a C-terminal superfamily 2 helicase (NS3hel) responsible for ATP-dependent RNA unwinding and associated NTPase/RTPase activities. Increasing evidence shows functional crosstalk between these domains, supporting the dual target inhibition as a promising antiviral approach. This study describes a structure-based virtual screening (SBVS) campaign using an in-house library (EMAC-DB) targeting both NS3hel and NS3pro. Following an integrated CADD workflow, we identified a new series of 4,5-dihydropyrazole derivatives as dual-site NS3 inhibitors. In vitro experiments confirmed that these compounds inhibit both NS3hel and NS3pro enzymatic activities at low micromolar concentrations. Notably, compound 5e emerged as a key candidate, demonstrating the highest potency and significantly reducing WNV replication in HuH-7 cells, with an EC50 of 0.42 ± 0.1 μM. These findings suggest that two mechanisms contribute to viral replication inhibition. Further investigations revealed that NS2B-NS3pro inhibition occurred through a non-competitive mechanism, whereas NS3hel inhibition was non-competitive with respect to ATP and competitive with respect to dsDNA, supporting the hypothesis that the compound interacts with the RNA-binding cleft of NS3. Overall, this work provides a structural and mechanistic framework for the optimization of 4,5-dihydropyrazole-based dual NS3 inhibitors, highlighting the importance of a dual-acting inhibitory strategy to potentially reduce the development of resistance.
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Structure-based virtual screening leads to the discovery of a 4,5-dihydropyrazole derivative as the first dual inhibitor of West Nile virus NS3 helicase and protease. — 科研速览 Science Skim