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Identification of a conserved virion-stabilizing network inside the interprotomer pocket of enteroviruses

机译:鉴定肠道病毒原生体间口袋内保守的病毒粒子稳定网络

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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 angstrom 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. Flatt, Butcher and colleagues use cryo-EM to report on coxsackieviruses B3 and B4 bound to different capsid binders. 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.
机译:肠道病毒对人类身体健康构成持续和广泛的威胁,目前尚无特定的治疗方法。小分子衣壳结合剂有可能被开发为抗病毒药物,以防止病毒附着和进入宿主细胞。为了帮助广泛的药物开发,我们在这里报告了柯萨奇病毒 B3 和 B4 的结构,这些结构使用单颗粒冷冻电镜与不同的原体间靶向衣壳结合剂结合。EM 密度图超过 3 埃分辨率,提供有关配体结合口袋中相互作用的详细信息。对比分析揭示了在原生体间位点形成保守的病毒粒子稳定网络的残基,并显示了允许锚定在口袋中以抑制病毒分解的小分子特性。Flatt,Butcher及其同事使用冷冻电镜报告了柯萨奇病毒B3和B4与不同衣壳结合剂的结合。对比分析揭示了在原生体间位点形成保守病毒粒子稳定网络的残基,并显示了允许锚定在口袋中以抑制病毒分解的小分子特性。

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