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Discovery of an essential nucleotidylating activity associated with a newly delineated conserved domain in the RNA polymerase-containing protein of all nidoviruses

机译:发现与所有拟南芥病毒的含RNA聚合酶的蛋白质中新划定的保守结构域相关的基本核苷酸活性

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摘要

RNA viruses encode an RNA-dependent RNA polymerase (RdRp) that catalyzes the synthesis of their RNA(s). In the case of positive-stranded RNA viruses belonging to the order Nidovirales, the RdRp resides in a replicase subunit that is unusually large. Bioinformatics analysis of this non-structural protein has now revealed a nidoviral signature domain (genetic marker) that is N-terminally adjacent to the RdRp and has no apparent homologs elsewhere. Based on its conservation profile, this domain is proposed to have nucleotidylation activity. We used recombinant non-structural protein 9 of the arterivirus equine arteritis virus (EAV) and different biochemical assays, including irreversible labeling with a GTP analog followed by a proteomics analysis, to demonstrate the manganese-dependent covalent binding of guanosine and uridine phosphates to a lysine/histidine residue. Most likely this was the invariant lysine of the newly identified domain, named nidovirus RdRp-associated nucleotidyltransferase (NiRAN), whose substitution with alanine severely diminished the described binding. Furthermore, this mutation crippled EAV and prevented the replication of severe acute respiratory syndrome coronavirus (SARS-CoV) in cell culture, indicating that NiRAN is essential for nidoviruses. Potential functions supported by NiRAN may include nucleic acid ligation, mRNA capping and protein-primed RNA synthesis, possibilities that remain to be explored in future studies.
机译:RNA病毒编码RNA依赖性RNA聚合酶(RdRp),催化其RNA的合成。在属于Nidovirales的正链RNA病毒的情况下,RdRp位于异常大的复制酶亚基中。现在,对该非结构蛋白的生物信息学分析显示出一个Nidoviral签名域(遗传标记),该域在N端与RdRp相邻,并且在其他地方没有明显的同源物。基于其保守性,提出该结构域具有核苷酸化活性。我们使用了大动脉病毒马动脉炎病毒(EAV)的重组非结构蛋白9和不同的生化分析,包括用GTP类似物进行不可逆标记,然后进行了蛋白质组学分析,以证明鸟嘌呤和尿苷磷酸酯对锰的共价结合赖氨酸/组氨酸残基。这最有可能是新鉴定的域的不变赖氨酸,即称为Nidovirus RdRp相关的核苷酸转移酶(NiRAN),其被丙氨酸取代严重降低了所描述的结合。此外,这种突变使EAV严重受损,并阻止了严重急性呼吸系统综合症冠状病毒(SARS-CoV)在细胞培养中的复制,这表明NiRAN对于尼多病毒是必不可少的。 NiRAN支持的潜在功能可能包括核酸连接,mRNA封端和蛋白质引发的RNA合成,在未来的研究中仍有待探索的可能性。

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