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The Predicted Metal-Binding Region of the Arterivirus Helicase Protein Is Involved in Subgenomic mRNA Synthesis, Genome Replication, and Virion Biogenesis

机译:动脉瘤解旋酶蛋白的预测的金属结合区参与亚基因组mRNA合成,基因组复制和病毒体生物发生。

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摘要

Equine arteritis virus (EAV), the prototype Arterivirus, is a positive-stranded RNA virus that expresses its replicase in the form of two large polyproteins of 1,727 and 3,175 amino acids. The functional replicase subunits (nonstructural proteins), which drive EAV genome replication and subgenomic mRNA transcription, are generated by extensive proteolytic processing. Subgenomic mRNA transcription involves an unusual discontinuous step and generates the mRNAs for structural protein expression. Previously, the phenotype of mutant EAV030F, which carries a single replicase point mutation (Ser-2429→Pro), had implicated the nsp10 replicase subunit (51 kDa) in viral RNA synthesis, and in particular in subgenomic mRNA transcription. nsp10 contains an N-terminal (putative) metal-binding domain (MBD), located just upstream of the Ser-2429→Pro mutation, and a helicase activity in its C-terminal part. We have now analyzed the N-terminal domain of nsp10 in considerable detail. A total of 38 mutants, most of them carrying specific single point mutations, were tested in the context of an EAV infectious cDNA clone. Variable effects on viral genome replication and subgenomic mRNA transcription were observed. In general, our results indicated that the MBD region, and in particular a set of 13 conserved Cys and His residues that are assumed to be involved in zinc binding, is essential for viral RNA synthesis. On the basis of these data and comparative sequence analyses, we postulate that the MBD may employ a rather unusual mode of zinc binding that could result in the association of up to four zinc cations with this domain. The region containing residue Ser-2429 may play the role of “hinge spacer,” which connects the MBD to the rest of nsp10. Several mutations in this region specifically affected subgenomic mRNA synthesis. Furthermore, one of the MBD mutants was replication and transcription competent but did not produce infectious progeny virus. This suggests that nsp10 is involved in an as yet unidentified step of virion biogenesis.
机译:马动脉炎病毒(EAV)是原型动脉病毒,是一种正链RNA病毒,以两种分别具有1,727和3,175个氨基酸的大多蛋白形式表达其复制酶。通过广泛的蛋白水解过程产生驱动EAV基因组复制和亚基因组mRNA转录的功能性复制酶亚基(非结构蛋白)。亚基因组mRNA转录涉及一个不寻常的不连续步骤,并生成用于结构蛋白表达的mRNA。以前,携带单个复制酶点突变(Ser-2429→Pro)的突变型EAV030F的表型已将nsp10复制酶亚基(51 kDa)牵连到病毒RNA合成中,尤其是在亚基因组mRNA转录中。 nsp10包含一个位于Ser-2429→Pro突变上游的N端(假定)金属结合域(MBD),并在其C端部分具有解旋酶活性。现在,我们已经相当详细地分析了nsp10的N末端结构域。在EAV传染性cDNA克隆的背景下测试了总共38个突变体,其中大多数携带特定的单点突变。观察到对病毒基因组复制和亚基因组mRNA转录的可变影响。总的来说,我们的结果表明,MBD区,尤其是一组13个保守的Cys和His残基(假定与锌结合有关),对于病毒RNA合成至关重要。根据这些数据和比较序列分析,我们假设MBD可能采用一种非常不寻常的锌结合模式,这可能导致多达四个锌阳离子与该结构域缔合。包含残基Ser-2429的区域可能起“铰链间隔子”的作用,该区域将MBD连接到nsp10的其余部分。该区域中的几个突变特别影响亚基因组mRNA的合成。此外,MBD突变体之一具有复制和转录能力,但不产生传染性子代病毒。这表明nsp10参与了一个尚未确定的病毒体生物发生步骤。

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