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在所有尼多病毒含RNA聚合酶蛋白中新鉴定的保守结构域中发现一种必需的核苷酸化活性。

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

作者信息

Lehmann Kathleen C, Gulyaeva Anastasia, Zevenhoven-Dobbe Jessika C, Janssen George M C, Ruben Mark, Overkleeft Hermen S, van Veelen Peter A, Samborskiy Dmitry V, Kravchenko Alexander A, Leontovich Andrey M, Sidorov Igor A, Snijder Eric J, Posthuma Clara C, Gorbalenya Alexander E

机构信息

Department of Medical Microbiology, Leiden University Medical Center, Leiden, 2300 RC, Leiden, The Netherlands.

Department of Immunohematology and Blood transfusion, Leiden University Medical Center, Leiden, 2300 RC, Leiden, The Netherlands.

出版信息

Nucleic Acids Res. 2015 Sep 30;43(17):8416-34. doi: 10.1093/nar/gkv838. Epub 2015 Aug 24.

Abstract

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.

摘要

RNA病毒编码一种依赖RNA的RNA聚合酶(RdRp),该酶催化其RNA的合成。对于属于尼多病毒目(Nidovirales)的正链RNA病毒而言,RdRp存在于一个异常大的复制酶亚基中。对这种非结构蛋白的生物信息学分析现已揭示出一个尼多病毒特征结构域(遗传标记),它在N端与RdRp相邻,且在其他地方没有明显的同源物。基于其保守性概况,该结构域被认为具有核苷酸化活性。我们使用动脉炎病毒马动脉炎病毒(EAV)的重组非结构蛋白9以及不同的生化分析方法,包括用GTP类似物进行不可逆标记,随后进行蛋白质组学分析,以证明鸟苷酸和尿苷酸与一个赖氨酸/组氨酸残基的锰依赖性共价结合。最有可能的是,这是新鉴定结构域中不变的赖氨酸,该结构域被命名为尼多病毒RdRp相关核苷酸转移酶(NiRAN),用丙氨酸替代该赖氨酸会严重减少所述结合。此外,这种突变使EAV失活,并阻止严重急性呼吸综合征冠状病毒(SARS-CoV)在细胞培养物中复制,表明NiRAN对尼多病毒至关重要。NiRAN支持的潜在功能可能包括核酸连接、mRNA加帽和蛋白质引发的RNA合成,这些可能性有待未来研究进一步探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d1f/4787807/011648f46643/gkv838fig1.jpg

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