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The SARS-coronavirus nsp7+nsp8 complex is a unique multimeric RNA polymerase capable of both de novo initiation and primer extension

机译:SARS冠状病毒nsp7 + nsp8复合体是独特的多聚体RNA聚合酶能够从头开始和引物延伸

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摘要

Uniquely among RNA viruses, replication of the ∼30-kb SARS-coronavirus genome is believed to involve two RNA-dependent RNA polymerase (RdRp) activities. The first is primer-dependent and associated with the 106-kDa non-structural protein 12 (nsp12), whereas the second is catalysed by the 22-kDa nsp8. This latter enzyme is capable of de novo initiation and has been proposed to operate as a primase. Interestingly, this protein has only been crystallized together with the 10-kDa nsp7, forming a hexadecameric, dsRNA-encircling ring structure [i.e. nsp(7+8), consisting of 8 copies of both nsps]. To better understand the implications of these structural characteristics for nsp8-driven RNA synthesis, we studied the prerequisites for the formation of the nsp(7+8) complex and its polymerase activity. We found that in particular the exposure of nsp8's natural N-terminal residue was paramount for both the protein's ability to associate with nsp7 and for boosting its RdRp activity. Moreover, this ‘improved’ recombinant nsp8 was capable of extending primed RNA templates, a property that had gone unnoticed thus far. The latter activity is, however, ∼20-fold weaker than that of the primer-dependent nsp12-RdRp at equal monomer concentrations. Finally, site-directed mutagenesis of conserved D/ExD/E motifs was employed to identify residues crucial for nsp(7+8) RdRp activity.
机译:在RNA病毒中,独特的是〜30kb SARS冠状病毒基因组的复制涉及两种RNA依赖性RNA聚合酶(RdRp)活性。第一个是引物依赖性的,并与106-kDa非结构蛋白12(nsp12)相关,而第二个是由22-kDa nsp8催化的。后一种酶能够从头开始,并且已经提出可以作为一种引发酶。有趣的是,该蛋白质仅与10-kDa nsp7一起结晶,形成了一个十六聚体,dsRNA环绕的环结构[即nsp(7 + 8),由两个nsps的8个副本组成]。为了更好地理解这些结构特征对nsp8驱动的RNA合成的影响,我们研究了nsp(7 + 8)复合物的形成及其聚合酶活性的先决条件。我们发现特别是nsp8天然N末端残基的暴露对于蛋白质与nsp7缔合的能力以及增强其RdRp活性都是至关重要的。而且,这种“改良”的重组nsp8能够扩展引发的RNA模板,这一特性迄今为止尚未引起人们的注意。然而,在相同单体浓度下,后者的活性比依赖引物的nsp12-RdRp的活性弱约20倍。最后,保守的D / ExD / E主题的定点诱变被用来识别对nsp(7 + 8)RdRp活性至关重要的残基。

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