SARS-CoV-2解旋酶NSP13的杨梅素结合晶体结构有助于发现新的天然抑制剂。

Patrick Kloskowski,Piotr Neumann,Priya Kumar,Annette Berndt,Matthias Dobbelstein,Ralf Ficner
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引用次数: 0

摘要

SARS-CoV-2解旋酶NSP13是病毒复制机制的一个高度保守的重要组成部分,使其成为抗病毒药物开发的一个有希望的靶点。在这里,我们展示了NSP13与天然黄酮类杨梅素结合的2 Å分辨率晶体结构,揭示了一个保守的变构结合位点。在这些结构发现的指导下,虚拟筛选活动确定了咖啡酸衍生物迷迭香酸和绿原酸作为潜在的新型天然抑制剂,实验验证了它们可以抑制rna解绕活性。这项研究提供了结构性见解,可以支持正在进行的针对SARS-CoV-2和其他具有大流行潜力的冠状病毒中NSP13的药物发现工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Myricetin-bound crystal structure of the SARS-CoV-2 helicase NSP13 facilitates the discovery of novel natural inhibitors.
The SARS-CoV-2 helicase NSP13 is a highly conserved and essential component of the viral replication machinery, making it a promising target for antiviral drug development. Here, we present the 2 Å resolution crystal structure of NSP13 bound to the natural flavonoid myricetin, revealing a conserved allosteric binding site. Guided by these structural findings, a virtual screening campaign identified the caffeic acid derivatives rosmarinic acid and chlorogenic acid as potential novel natural inhibitors, which were experimentally validated to inhibit RNA-unwinding activity. This study provides structural insights that could support ongoing drug-discovery efforts targeting NSP13 in SARS-CoV-2 and other coronaviruses with pandemic potential.
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