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辛诺柏病毒 L 蛋白的结构与功能特征分析。

Structural and functional characterization of the Sin Nombre virus L protein.

机构信息

Bernhard Nocht Institute for Tropical Medicine (BNITM), Hamburg, Germany.

Centre for Structural Systems Biology (CSSB), Hamburg, Germany.

出版信息

PLoS Pathog. 2023 Aug 7;19(8):e1011533. doi: 10.1371/journal.ppat.1011533. eCollection 2023 Aug.

Abstract

The Bunyavirales order is a large and diverse group of segmented negative-strand RNA viruses. Several virus families within this order contain important human pathogens, including Sin Nombre virus (SNV) of the Hantaviridae. Despite the high epidemic potential of bunyaviruses, specific medical countermeasures such as vaccines or antivirals are missing. The multifunctional ~250 kDa L protein of hantaviruses, amongst other functional domains, harbors the RNA-dependent RNA polymerase (RdRp) and an endonuclease and catalyzes transcription as well as replication of the viral RNA genome, making it a promising therapeutic target. The development of inhibitors targeting these key processes requires a profound understanding of the catalytic mechanisms. Here, we established expression and purification protocols of the full-length SNV L protein bearing the endonuclease mutation K124A. We applied different biochemical in vitro assays to provide an extensive characterization of the different enzymatic functions as well as the capacity of the hantavirus L protein to interact with the viral RNA. By using single-particle cryo-EM, we obtained a 3D model including the L protein core region containing the RdRp, in complex with the 5' promoter RNA. This first high-resolution model of a New World hantavirus L protein shows striking similarity to related bunyavirus L proteins. The interaction of the L protein with the 5' RNA observed in the structural model confirms our hypothesis of protein-RNA binding based on our biochemical data. Taken together, this study provides an excellent basis for future structural and functional studies on the hantavirus L protein and for the development of antiviral compounds.

摘要

布尼亚病毒目是一个庞大而多样的负链 RNA 病毒属。该目中的几个病毒科包含重要的人类病原体,包括汉坦病毒科的辛诺柏病毒 (SNV)。尽管布尼亚病毒具有很高的流行潜力,但仍缺乏特定的医疗对策,如疫苗或抗病毒药物。汉坦病毒的多功能~250 kDa L 蛋白除其他功能域外,还具有 RNA 依赖性 RNA 聚合酶 (RdRp) 和内切酶,并催化病毒 RNA 基因组的转录和复制,使其成为有前途的治疗靶点。针对这些关键过程的抑制剂的开发需要深入了解催化机制。在这里,我们建立了全长 SNV L 蛋白的表达和纯化方案,该蛋白带有内切酶突变 K124A。我们应用了不同的生化体外测定方法,对不同的酶功能以及汉坦病毒 L 蛋白与病毒 RNA 相互作用的能力进行了广泛的表征。通过使用单颗粒 cryo-EM,我们获得了一个包含 RdRp 的 L 蛋白核心区域与 5'启动子 RNA 复合物的 3D 模型。这个新世界汉坦病毒 L 蛋白的第一个高分辨率模型与相关布尼亚病毒 L 蛋白非常相似。结构模型中观察到的 L 蛋白与 5' RNA 的相互作用证实了我们基于生化数据的蛋白质-RNA 结合假说。总之,这项研究为汉坦病毒 L 蛋白的未来结构和功能研究以及抗病毒化合物的开发提供了极好的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1664/10406178/6e837d4aaa51/ppat.1011533.g001.jpg

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