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人细小病毒B19感染性克隆的分子与功能分析表明,NS1、VP1和11千道尔顿蛋白在病毒复制和感染性中起关键作用。

Molecular and functional analyses of a human parvovirus B19 infectious clone demonstrates essential roles for NS1, VP1, and the 11-kilodalton protein in virus replication and infectivity.

作者信息

Zhi Ning, Mills Ian P, Lu Jun, Wong Susan, Filippone Claudia, Brown Kevin E

机构信息

Hematology Branch, National Heart Lung and Blood Institute, National Institutes of Health, Bethesda, MD 20892-1202, USA.

出版信息

J Virol. 2006 Jun;80(12):5941-50. doi: 10.1128/JVI.02430-05.

Abstract

In an attempt to experimentally define the roles of viral proteins encoded by the B19 genome in the viral life cycle, we utilized the B19 infectious clone constructed in our previous study to create two groups of B19 mutant genomes: (i) null mutants, in which either a translational initiation codon for each of these viral genes was substituted by a translational termination codon or a termination codon was inserted into the open reading frame by a frameshift; and (ii) a deletion mutant, in which half of the hairpin sequence was deleted at both the 5' and the 3' termini. The impact of these mutations on viral infectivity, DNA replication, capsid protein production, and distribution was systematically examined. Null mutants of the NS and VP1 proteins or deletion of the terminal hairpin sequence completely abolished the viral infectivity, whereas blocking expression of the 7.5-kDa protein or the putative protein X had no effect on infectivity in vitro. Blocking expression of the proline-rich 11-kDa protein significantly reduced B19 viral infectivity, and protein studies suggested that the expression of the 11-kDa protein was critical for VP2 capsid production and trafficking in infected cells. These findings suggest a previously unrecognized role for the 11-kDa protein, and together the results enhance our understanding of the key features of the B19 viral genome and proteins.

摘要

为了通过实验确定由B19基因组编码的病毒蛋白在病毒生命周期中的作用,我们利用在先前研究中构建的B19感染性克隆创建了两组B19突变基因组:(i)无效突变体,其中这些病毒基因中每个基因的翻译起始密码子被翻译终止密码子取代,或者通过移码将终止密码子插入开放阅读框;(ii)缺失突变体,其中在5'和3'末端均缺失了一半的发夹序列。系统地检查了这些突变对病毒感染性、DNA复制、衣壳蛋白产生和分布的影响。NS和VP1蛋白的无效突变体或末端发夹序列的缺失完全消除了病毒感染性,而阻断7.5 kDa蛋白或推定的蛋白X的表达对体外感染性没有影响。阻断富含脯氨酸的11 kDa蛋白的表达显著降低了B19病毒感染性,蛋白质研究表明11 kDa蛋白的表达对于感染细胞中VP2衣壳的产生和运输至关重要。这些发现表明11 kDa蛋白具有先前未被认识的作用,这些结果共同增强了我们对B19病毒基因组和蛋白关键特征的理解。

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