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柯萨奇病毒A16 2A蛋白酶的晶体学片段筛选为广谱抗肠道病毒的开发带来了新机遇。

Crystallographic Fragment Screen of Coxsackievirus A16 2A Protease identifies new opportunities for the development of broad-spectrum anti-enterovirals.

作者信息

Lithgo Ryan M, Tomlinson Charles W E, Fairhead Michael, Winokan Max, Thompson Warren, Wild Conor, Aschenbrenner Jasmin Cara, Balcomb Blake H, Marples Peter G, Chandran Anu V, Golding Mathew, Koekemoer Lizbe, Williams Eleanor P, Wang SiYl, Ni Xiaomin, MacLean Elizabeth, Giroud Charline, Godoy Andre Schutzer, Xavier Mary-Ann, Walsh Martin, Fearon Daren, von Delft Frank

出版信息

bioRxiv. 2024 Apr 29:2024.04.29.591684. doi: 10.1101/2024.04.29.591684.

Abstract

are the causative agents of paediatric hand-foot-and-mouth disease, and a target for pandemic preparedness due to the risk of higher order complications in a large-scale outbreak. The 2A protease of these viruses is responsible for the self-cleavage of the poly protein, allowing for correct folding and assembly of capsid proteins in the final stages of viral replication. These 2A proteases are highly conserved between species, such as . Inhibition of the 2A protease deranges capsid folding and assembly, preventing formation of mature virions in host cells and making the protease a valuable target for antiviral activity. Herein, we describe a crystallographic fragment screening campaign that identified 75 fragments which bind to the 2A protease including 38 unique compounds shown to bind within the active site. These fragments reveal a path for the development of non-peptidomimetic inhibitors of the 2A protease with broad-spectrum anti-enteroviral activity.

摘要

是小儿手足口病的病原体,由于在大规模疫情中存在出现更严重并发症的风险,因此是大流行防范的目标。这些病毒的2A蛋白酶负责多蛋白的自我切割,使衣壳蛋白在病毒复制的最后阶段能够正确折叠和组装。这些2A蛋白酶在物种之间高度保守,例如 。抑制2A蛋白酶会扰乱衣壳的折叠和组装,阻止宿主细胞中成熟病毒粒子的形成,使该蛋白酶成为抗病毒活性的重要靶点。在此,我们描述了一项晶体学片段筛选活动,该活动鉴定出75个与2A蛋白酶结合的片段,其中包括38种显示在活性位点内结合的独特化合物。这些片段为开发具有广谱抗肠道病毒活性的2A蛋白酶非肽模拟抑制剂开辟了道路。

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