首页> 美国卫生研究院文献>Journal of Virology >Structure of Crimean-Congo Hemorrhagic Fever Virus Nucleoprotein: Superhelical Homo-Oligomers and the Role of Caspase-3 Cleavage
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Structure of Crimean-Congo Hemorrhagic Fever Virus Nucleoprotein: Superhelical Homo-Oligomers and the Role of Caspase-3 Cleavage

机译:克里米亚刚果出血热病毒病毒核蛋白的结构:超螺旋均聚物和Caspase-3裂解的作用。

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摘要

Crimean-Congo hemorrhagic fever, a severe hemorrhagic disease found throughout Africa, Europe, and Asia, is caused by the tick-borne Crimean-Congo hemorrhagic fever virus (CCHFV). CCHFV is a negative-sense single-stranded RNA (ssRNA) virus belonging to the Nairovirus genus of the Bunyaviridae family. Its genome of three single-stranded RNA segments is encapsidated by the nucleocapsid protein (CCHFV N) to form the ribonucleoprotein complex. This ribonucleoprotein complex is required during replication and transcription of the viral genomic RNA. Here, we present the crystal structures of the CCHFV N in two distinct forms, an oligomeric form comprised of double antiparallel superhelices and a monomeric form. The head-to-tail interaction of the stalk region of one CCHFV N subunit with the base of the globular body of the adjacent subunit stabilizes the helical organization of the oligomeric form of CCHFV N. It also masks the conserved caspase-3 cleavage site present at the tip of the stalk region from host cell caspase-3 interaction and cleavage. By incubation with primer-length ssRNAs, we also obtained the crystal structure of CCHFV N in its monomeric form, which is similar to a recently published structure. The conformational change of CCHFV N upon deoligomerization results in the exposure of the caspase-3 cleavage site and subjects CCHFV N to caspase-3 cleavage. Mutations of this cleavage site inhibit cleavage by caspase-3 and result in enhanced viral polymerase activity. Thus, cleavage of CCHFV N by host cell caspase-3 appears to be crucial for controlling viral RNA synthesis and represents an important host defense mechanism against CCHFV infection.
机译:克里米亚刚果出血热是一种由the传播的克里米亚刚果出血热病毒(CCHFV)引起的非洲,欧洲和亚洲广泛存在的严重出血性疾病。 CCHFV是属于Bunyaviridae家族内罗病毒属的负义单链RNA(ssRNA)病毒。它的三个单链RNA片段的基因组被核衣壳蛋白(CCHFV N)包裹,形成核糖核蛋白复合物。在病毒基因组RNA的复制和转录过程中需要这种核糖核蛋白复合物。在这里,我们以两种不同的形式展示CCHFV N的晶体结构,包括双反平行超螺旋的低聚形式和单体形式。一个CCHFV N亚基的茎区域与相邻亚基球状体基部的头尾相互作用可稳定CCHFV N寡聚形式的螺旋结构。它也掩盖了存在的保守的caspase-3切割位点。从宿主细胞caspase-3的相互作用和切割开始在茎区域的末端。通过与引物长度的ssRNA一起温育,我们还获得了CCHFV N单体形式的晶体结构,该结构与最近发表的结构相似。 CCHFV N解聚后的构象变化导致caspase-3裂解位点暴露,并使CCHFV N受到caspase-3裂解。该切割位点的突变抑制了caspase-3的切割,并导致病毒聚合酶活性增强。因此,宿主细胞caspase-3裂解CCHFV N似乎对于控制病毒RNA合成至关重要,并且代表了针对CCHFV感染的重要宿主防御机制。

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