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Trimeric Hantavirus Nucleocapsid Protein Binds Specifically to the Viral RNA Panhandle

机译:三聚体汉坦病毒核衣壳蛋白特异性结合病毒RNA Panhandle

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摘要

Hantaviruses are tripartite negative-sense RNA viruses and members of the Bunyaviridae family. The nucleocapsid (N) protein is encoded by the smallest of the three genome segments (S). N protein is the principal structural component of the viral capsid and is central to the hantavirus replication cycle. We examined intermolecular N-protein interaction and RNA binding by using bacterially expressed Sin Nombre virus N protein. N assembles into di- and trimeric forms. The mono- and dimeric forms exist transiently and assemble into a trimeric form. In contrast, the trimer is highly stable and does not efficiently disassemble into the mono- and dimeric forms. The purified N-protein trimer is able to discriminate between viral and nonviral RNA molecules and, interestingly, recognizes and binds with high affinity the panhandle structure composed of the 3′ and 5′ ends of the genomic RNA. In contrast, the mono- and dimeric forms of N bind RNA to form a complex that is semispecific and salt sensitive. We suggest that trimerization of N protein is a molecular switch to generate a protein complex that can discriminate between viral and nonviral RNA molecules during the early steps of the encapsidation process.
机译:汉坦病毒是三重负义RNA病毒,是Bunyaviridae家族的成员。核衣壳(N)蛋白由三个基因组片段(S)中最小的编码。 N蛋白是病毒衣壳的主要结构成分,在汉坦病毒复制周期中至关重要。我们通过使用细菌表达的Sin Nombre病毒N蛋白检查了分子间N蛋白相互作用和RNA结合。 N组装为二聚体和三聚体形式。单和二聚体形式瞬时存在并组装成三聚体形式。相反,三聚体是高度稳定的,并且不能有效地分解成单聚体和二聚体形式。纯化的N蛋白三聚体能够区分病毒RNA和非病毒RNA分子,有趣的是,可以识别和结合由基因组RNA 3'和5'末端组成的泛柄结构。相反,N的单聚体和二聚体形式结合RNA形成半特异性和盐敏感的复合物。我们建议N蛋白的三聚化是一个分子开关,以产生一种蛋白质复合物,可以在衣壳化过程的早期阶段区分病毒和非病毒RNA分子。

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