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感染性柯萨奇病毒B3 cDNA的完整核苷酸序列:在正链RNA合成过程中重新获得两个初始的5'尿苷残基。

Complete nucleotide sequence of infectious Coxsackievirus B3 cDNA: two initial 5' uridine residues are regained during plus-strand RNA synthesis.

作者信息

Klump W M, Bergmann I, Müller B C, Ameis D, Kandolf R

机构信息

Max-Planck-Institut für Biochemie, Martinsried, Federal Republic of Germany.

出版信息

J Virol. 1990 Apr;64(4):1573-83. doi: 10.1128/JVI.64.4.1573-1583.1990.

Abstract

A full-length reverse-transcribed, infectious cDNA copy of coxsackievirus B3 (CVB3) was used to determine the nucleotide sequence of this cardiotropic enterovirus. Comparison of the nucleotide sequence and the deduced amino acid sequence of the viral precursor polyprotein with the sequences of other group B coxsackieviruses (CVB1 and CVB4) demonstrates a high degree of genetic identity. They share about 80% homology at the nucleotide level and about 90% when the amino acid sequences of the polyproteins are compared. The potential processing sites of the coxsackievirus polyproteins, as deduced from alignment with the poliovirus sequence, are conserved among these enteroviruses with the exception of the cleavage sites between VP1 and 2Apro and between polypeptides 2B and 2C. Comparison of the 5' termini of the enteroviral genomes reveals a high degree of identity, including the initial 5' consensus UUAAAACAGC, suggesting essential functions in virus replication. An important finding concerning the molecular basis of infectivity was that both recombinant CVB3 cDNA and in vitro-synthesized CVB3 RNA transcripts are infectious, although two initial 5' uridine residues found on the authentic CVB3 RNA were missing. Here, we report that cDNA-generated CVB3, as well as CVB3 generated by in vitro-synthesized RNA transcripts, regains the authentic initial 5' uridine residues during replication in transfected cells, indicating that the picornaviral primer molecule VPg-pUpU may be uridylylated in a template-independent fashion. The generation of virus or virus mutants with infectious recombinant CVB3 cDNA and in vitro-synthesized infectious CVB3 transcripts should provide a valuable means for studying the molecular basis of the pathogenicity of this cardiotropic enterovirus.

摘要

利用柯萨奇病毒B3(CVB3)的全长反转录感染性cDNA拷贝来确定这种嗜心性肠道病毒的核苷酸序列。将该病毒前体多聚蛋白的核苷酸序列和推导的氨基酸序列与其他B组柯萨奇病毒(CVB1和CVB4)的序列进行比较,显示出高度的基因同一性。它们在核苷酸水平上约有80%的同源性,在比较多聚蛋白的氨基酸序列时约为90%。从与脊髓灰质炎病毒序列比对推导得出的柯萨奇病毒多聚蛋白的潜在加工位点,在这些肠道病毒中是保守的,但VP1和2A蛋白酶之间以及多肽2B和2C之间的切割位点除外。肠道病毒基因组5'末端的比较显示出高度的同一性,包括最初的5'共有序列UUAAAACAGC,表明其在病毒复制中具有重要功能。关于感染性分子基础的一个重要发现是,重组CVB3 cDNA和体外合成的CVB3 RNA转录本均具有感染性,尽管在天然CVB3 RNA上发现的两个初始5'尿苷残基缺失。在此,我们报告,由cDNA产生的CVB3以及由体外合成的RNA转录本产生的CVB3,在转染细胞复制过程中重新获得了天然的初始5'尿苷残基,这表明微小核糖核酸病毒引物分子VPg-pUpU可能以模板非依赖的方式进行尿苷酸化。用感染性重组CVB3 cDNA和体外合成的感染性CVB3转录本产生病毒或病毒突变体,应为研究这种嗜心性肠道病毒致病性的分子基础提供一种有价值的手段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bd0/249292/edba4a8fc33a/jvirol00059-0172-a.jpg

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