化学
病毒
肺病毒
肽
肺病毒科
呼吸系统
病毒学
副粘病毒科
单反病毒
酶抑制剂
生物活性
融合蛋白
体外
生物化学
细胞融合
结构-活动关系
分子生物学
融合
肽合成
脂质双层融合
酶
细胞培养
肽序列
作者
Nadège Pidoux,Logan Roh,Nancy Nicolet,Roger Marti,Adrien Le Rouzic,Clémentine Prompt,Jenna Fix,S. Duquerroy,Felix Rey,Marie-Anne Rameix-Welti,Mathilde Keck,Peggy Barbe,Dominique Garcin,Geneviève Mottet-Osman,Thibaut Larcher,Marie Galloux,Origène Nyanguile
标识
DOI:10.1021/acs.jmedchem.5c02932
摘要
Abstract Respiratory syncytial virus infection (RSV) is a major global health concern, particularly in infants and elderly populations. In this work, we have screened and identified 3 double-stapled peptides derived from a minimal domain of the RSV F heptad repeat, namely 3/4i, 3/4m, and 4/4g, which are potent inhibitors of RSV fusion and remain active against viral escape mutants resistant to small-molecule fusion inhibitors. Our structural activity relationship (SAR) analysis demonstrates that combining a limited set of staples is sufficient to achieve high antiviral potency. X-ray crystallography revealed that the enhanced potency of 3/4i and 3/4m primarily arises from strong hydrophobic interactions between the N-terminal staple and the trimeric HR1 coiled coil of RSV F. In vivo pharmacokinetic, imaging, and feasibility studies in RSV-infected Balb/c mice further support intranasal administration as a promising route for delivering these stapled peptides to the lung, highlighting their potential as therapeutics against RSV.
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