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The methyltransferase domain of dengue virus protein NS5 ensures efficient RNA synthesis initiation and elongation by the polymerase domain

机译:登革热病毒蛋白NS5的甲基转移酶结构域可通过聚合酶结构域确保有效的RNA合成起始和延伸

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Viral RNA-dependent RNA polymerases (RdRps) responsible for the replication of single-strand RNA virus genomes exert their function in the context of complex replication machineries. Within these replication complexes the polymerase activity is often highly regulated by RNA elements, proteins or other domains of multi-domain polymerases. Here, we present data of the influence of the methyltransferase domain (NS5-MTase) of dengue virus (DENV) protein NS5 on the RdRp activity of the polymerase domain (NS5-Pol). The steady-state polymerase activities of DENV-2 recombinant NS5 and NS5-Pol are compared using different biochemical assays allowing the dissection of the de novo initiation, transition and elongation steps of RNA synthesis. We show that NS5-MTase ensures efficient RdRp activity by stimulating the de novo initiation and the elongation phase. This stimulation is related to a higher affinity of NS5 toward the single-strand RNA template indicating NS5-MTase either completes a high-affinity RNA binding site and/or promotes the correct formation of the template tunnel. Furthermore, the NS5-MTase increases the affinity of the priming nucleotide ATP upon de novo initiation and causes a higher catalytic efficiency of the polymerase upon elongation. The complex stimulation pattern is discussed under the perspective that NS5 adopts several conformations during RNA synthesis.
机译:负责单链RNA病毒基因组复制的病毒RNA依赖性RNA聚合酶(RdRps)在复杂的复制机制中发挥其功能。在这些复制复合物中,聚合酶活性通常受到RNA元件,蛋白质或多域聚合酶其他域的高度调节。在这里,我们介绍了登革病毒(DENV)蛋白NS5的甲基转移酶结构域(NS5-MTase)对聚合酶结构域(NS5-Pol)RdRp活性的影响的数据。使用不同的生化分析方法比较了DENV-2重组NS5和NS5-Pol的稳态聚合酶活性,从而可以解剖RNA合成的从头开始,过渡和延伸步骤。我们表明,NS5-MTase通过刺激从头开始和延伸阶段来确保有效的RdRp活性。这种刺激与NS5对单链RNA模板的更高亲和力有关,表明NS5-MTase可以完成高亲和力RNA结合位点和/或促进模板通道的正确形成。此外,NS5-MTase在从头开始时增加了引物核苷酸ATP的亲和力,并在延伸时引起聚合酶更高的催化效率。在NS5在RNA合成过程中采用几种构象的角度讨论了复杂的刺激模式。

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