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从二芳基硫醚到二芳基胺:具有改善代谢稳定性的新型埃博拉病毒进入抑制剂。

From Diarylsulfides to Diarylamines: New Ebola Virus Entry Inhibitors with Improved Metabolic Stability.

作者信息

Morales-Tenorio Marcos, Lasala Fátima, Garcia-Rubia Alfonso, Aledavood Elnaz, Heung Michelle, Olal Catherine, Escudero-Pérez Beatriz, Oquist Paola, Canales Ángeles, Alonso Covadonga, Martínez Ana, Muñoz-Fontela César, Delgado Rafael, Gil Carmen

机构信息

Centro de Investigaciones Biológicas Margarita Salas (CIB-CSIC), 28040 Madrid, Spain.

Instituto de Investigación Hospital 12 de Octubre, 28041 Madrid, Spain.

出版信息

J Med Chem. 2025 Jun 12;68(11):11786-11800. doi: 10.1021/acs.jmedchem.5c00615. Epub 2025 May 17.

Abstract

The persistence of current outbreaks of Ebola virus (EBOV) disease and challenges in the production and administration of approved vaccines and treatments highlight the continuous exploration of new therapeutic alternatives. In this context, this work focuses on optimizing diarylsulfide hits previously identified as EBOV entry inhibitors. Structural modifications resulted in diarylamine derivatives, with confirmed antiviral activity against replicative EBOV and significantly improved metabolic stability compared to diarylsulfides. Using different techniques, the EBOV glycoprotein (EBOV-GP) was identified as the target of these compounds. Residue Y517 is critical for biological activity, while T519, E100, and D522 also contribute to ligand binding. Furthermore, the binding of the derivatives to EBOV-GP has been shown to destabilize the complex with the virus receptor NPC1. In short, a new family of diarylsulfides and diarylamines with antiviral activity against EBOV has been developed, and their mechanism of action has been deciphered, paving the way for future pharmaceutical development.

摘要

当前埃博拉病毒(EBOV)病疫情的持续以及获批疫苗和治疗方法在生产和管理方面的挑战凸显了对新治疗方案的持续探索。在此背景下,这项工作聚焦于优化先前鉴定为EBOV进入抑制剂的二芳基硫醚类先导化合物。结构修饰产生了二芳基胺衍生物,其对复制型EBOV具有确定的抗病毒活性,并且与二芳基硫醚相比代谢稳定性显著提高。使用不同技术,确定EBOV糖蛋白(EBOV-GP)为这些化合物的靶点。残基Y517对生物活性至关重要,而T519、E100和D522也有助于配体结合。此外,已表明衍生物与EBOV-GP的结合会破坏其与病毒受体NPC1的复合物稳定性。简而言之,已开发出具有抗EBOV抗病毒活性的新型二芳基硫醚和二芳基胺家族,并阐明了其作用机制,为未来的药物开发铺平了道路。

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