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与心脏毒力相关的柯萨奇病毒B3基因组区域。

Genomic regions of coxsackievirus B3 associated with cardiovirulence.

作者信息

Lee C, Maull E, Chapman N, Tracy S, Gauntt C

机构信息

Department of Microbiology, University of Arkansas for Medical Science, Little Rock, USA.

出版信息

J Med Virol. 1997 Jul;52(3):341-7.

PMID:9210047
Abstract

The molecular basis for cardiovirulence in the coxsackievirus B3 (CVB3) genome was examined in a murine model of acute myocarditis. Infectious cDNAs representing a highly cardiovirulent coxsackievirus B3 (CVB3m) and a noncardiovirulent (CVB30) virus were used to construct infectious chimeric cDNAs. Assays of the resulting recombinant viruses for cardiovirulence in adolescent male CD-1 mice showed that the 5' nontranslated region (5' NTR) of the CVB3m genome plays the major role in determining cardiovirulence and that the genomic region encoding the capsid proteins has a minor additive effect in increasing cardiovirulence. Nucleotide sequences in the 5' NTR of CVB3m and CVB30 differ at 23 positions; 14 are located in four stemloop motifs of the secondary structure and may influence the cardiovirulent phenotype by regulating RNA or protein synthesis. A comparison of predicted amino acid sequences of capsid proteins in CVB3m and CVB30 identified two amino acids as potential candidate contributors to cardiovirulence, i.e., amino acids at positions A207 (Asn-Asp) in the puff structure of the E-F loop of VP2 and A566 (Gln-Glu) in the C terminal of VP3 at the external surface. The data from this study and published literature support the conclusion that cardiovirulence of a CVB3 can depend on several regions of the genome.

摘要

在急性心肌炎的小鼠模型中,研究了柯萨奇病毒B3(CVB3)基因组中心脏毒性的分子基础。用代表高心脏毒性的柯萨奇病毒B3(CVB3m)和无心脏毒性(CVB30)病毒的感染性cDNA构建感染性嵌合cDNA。对所得重组病毒在青春期雄性CD-1小鼠中的心脏毒性进行检测,结果表明CVB3m基因组的5'非翻译区(5'NTR)在决定心脏毒性方面起主要作用,而编码衣壳蛋白的基因组区域在增加心脏毒性方面有较小的累加效应。CVB3m和CVB30的5'NTR中的核苷酸序列在23个位置不同;14个位于二级结构的四个茎环基序中,可能通过调节RNA或蛋白质合成来影响心脏毒性表型。比较CVB3m和CVB30中衣壳蛋白的预测氨基酸序列,确定两个氨基酸为心脏毒性的潜在候选贡献者,即VP2的E-F环膨出结构中A207位的氨基酸(Asn-Asp)和外表面VP3 C末端的A566位的氨基酸(Gln-Glu)。本研究的数据和已发表的文献支持这样的结论,即CVB3的心脏毒性可能取决于基因组的几个区域。

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