Faculty of Biological and Environmental Sciences, Molecular and Integrative Bioscience Research Programme, University of Helsinki, Helsinki, Finland.
Helsinki Institute of Life Sciences, Institute of Biotechnology, University of Helsinki, Helsinki, Finland.
Commun Biol. 2021 Feb 26;4(1):250. doi: 10.1038/s42003-021-01779-x.
Enteroviruses pose a persistent and widespread threat to human physical health, with no specific treatments available. Small molecule capsid binders have the potential to be developed as antivirals that prevent virus attachment and entry into host cells. To aid with broad-range drug development, we report here structures of coxsackieviruses B3 and B4 bound to different interprotomer-targeting capsid binders using single-particle cryo-EM. The EM density maps are beyond 3 Å resolution, providing detailed information about interactions in the ligand-binding pocket. Comparative analysis revealed the residues that form a conserved virion-stabilizing network at the interprotomer site, and showed the small molecule properties that allow anchoring in the pocket to inhibit virus disassembly.
肠道病毒对人类身体健康构成持续且广泛的威胁,目前尚无特效疗法。小分子衣壳结合物具有开发为抗病毒药物的潜力,可阻止病毒附着和进入宿主细胞。为了辅助广谱药物研发,我们在此利用单颗粒冷冻电镜技术报告了柯萨奇病毒 B3 和 B4 与不同的同三聚体靶向衣壳结合物结合的结构。电镜密度图的分辨率超过 3Å,提供了配体结合口袋中相互作用的详细信息。比较分析揭示了在同三聚体部位形成保守病毒稳定网络的残基,并展示了允许锚定在口袋中以抑制病毒解体的小分子特性。