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Initiation extension and termination of RNA synthesis by a paramyxovirus polymerase

机译:副粘病毒聚合酶启动延伸和终止RNA合成

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摘要

Paramyxoviruses represent a family of RNA viruses causing significant human diseases. These include measles virus, the most infectious virus ever reported, in addition to parainfluenza virus, and other emerging viruses. Paramyxoviruses likely share common replication machinery but their mechanisms of RNA biosynthesis activities and details of their complex polymerase structures are unknown. Mechanistic and functional details of a paramyxovirus polymerase would have sweeping implications for understanding RNA virus replication and for the development of new antiviral medicines. To study paramyxovirus polymerase structure and function, we expressed an active recombinant Nipah virus (NiV) polymerase complex assembled from the multifunctional NiV L protein bound to its phosphoprotein cofactor. NiV is an emerging highly pathogenic virus that causes severe encephalitis and has been declared a global public health concern due to its high mortality rate. Using negative-stain electron microscopy, we demonstrated NiV polymerase forms ring-like particles resembling related RNA polymerases. We identified conserved sequence elements driving recognition of the 3′-terminal genomic promoter by NiV polymerase, and leading to initiation of RNA synthesis, primer extension, and transition to elongation mode. Polyadenylation resulting from NiV polymerase stuttering provides a mechanistic basis for transcription termination. It also suggests a divergent adaptation in promoter recognition between pneumo- and paramyxoviruses. The lack of available antiviral therapy for NiV prompted us to identify the triphosphate forms of R1479 and GS-5734, two clinically relevant nucleotide analogs, as substrates and inhibitors of NiV polymerase activity by delayed chain termination. Overall, these findings provide low-resolution structural details and the mechanism of an RNA polymerase from a previously uncharacterized virus family. This work illustrates important functional differences yet remarkable similarities between the polymerases of nonsegmented negative-strand RNA viruses.
机译:副粘病毒代表引起重大人类疾病的RNA病毒家族。除了副流感病毒和其他新出现的病毒,这些病毒还包括麻疹病毒(有史以来最具传染性的病毒)。副粘病毒可能共享相同的复制机制,但其RNA生物合成活性的机制及其复杂聚合酶结构的细节尚不清楚。副粘病毒聚合酶的机制和功能细节对于理解RNA病毒复制和开发新的抗病毒药物具有广泛的意义。为了研究副粘病毒聚合酶的结构和功能,我们表达了一种活性重组尼帕病毒(NiV)聚合酶复合物,该复合物由结合到其磷蛋白辅因子上的多功能NiV L蛋白组装而成。 NiV是一种新兴的高致病性病毒,可引起严重的脑炎,并且由于其高死亡率而被宣布为全球公共卫生关注的问题。使用负染色电子显微镜,我们证明了NiV聚合酶形成类似于相关RNA聚合酶的环状颗粒。我们确定了保守的序列元件,通过NiV聚合酶驱动识别3'-末端基因组启动子,并导致RNA合成的开始,引物延伸和过渡到延伸模式。由NiV聚合酶停滞产生的聚腺苷酸化为转录终止提供了机制基础。这也表明在肺炎病毒和副粘病毒之间启动子识别上的差异适应。对于NiV缺乏可用的抗病毒治疗,促使我们确定了R1479和GS-5734的三磷酸形式,这是两种临床相关的核苷酸类似物,是NiV聚合酶活性的底物和抑制剂,可通过延迟链终止来抑制。总体而言,这些发现提供了低分辨率的结构细节以及以前未鉴定的病毒家族的RNA聚合酶的机制。这项工作说明了非分段的负链RNA病毒的聚合酶之间重要的功能差异和显着的相似性。

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