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小鼠肝炎病毒核衣壳基因内的内部开放阅读框编码一种对病毒复制非必需的结构蛋白。

The internal open reading frame within the nucleocapsid gene of mouse hepatitis virus encodes a structural protein that is not essential for viral replication.

作者信息

Fischer F, Peng D, Hingley S T, Weiss S R, Masters P S

机构信息

Department of Biomedical Sciences, State University of New York at Albany, New York 12237, USA.

出版信息

J Virol. 1997 Feb;71(2):996-1003. doi: 10.1128/JVI.71.2.996-1003.1997.

Abstract

The coronavirus mouse hepatitis virus (MHV) contains a large open reading frame embedded entirely within the 5' half of its nucleocapsid (N) gene. This internal gene (designated I) is in the +1 reading frame with respect to the N gene, and it encodes a mostly hydrophobic 23-kDa polypeptide. We have found that this protein is expressed in MHV-infected cells and that it is a previously unrecognized structural protein of the virion. To analyze the potential biological importance of the I gene, we disrupted its expression by site-directed mutagenesis using targeted RNA recombination. The start codon for I was replaced by a threonine codon, and a stop codon was introduced at a short interval downstream. Both alterations created silent changes in the N reading frame. In vitro translation studies showed that these mutations completely abolished synthesis of I protein, and immunological analysis of infected cell lysates confirmed this conclusion. The MHV I mutant was viable and grew to high titer. However, the I mutant had a reduced plaque size in comparison with its isogenic wild-type counterpart, suggesting that expression of I confers some minor growth advantage to the virus. The engineered mutations were stable during the course of experimental infection in mice, and the I mutant showed no significant differences from wild type in its ability to replicate in the brains or livers of infected animals. These results demonstrate that I protein is not essential for the replication of MHV either in tissue culture or in its natural host.

摘要

冠状病毒小鼠肝炎病毒(MHV)含有一个大型开放阅读框,完全嵌入其核衣壳(N)基因的5'端一半区域内。这个内部基因(命名为I)相对于N基因处于+1阅读框,它编码一种主要为疏水性的23 kDa多肽。我们发现这种蛋白质在MHV感染的细胞中表达,并且它是病毒体一种先前未被识别的结构蛋白。为了分析I基因潜在的生物学重要性,我们使用靶向RNA重组通过定点诱变破坏其表达。I的起始密码子被苏氨酸密码子取代,并且在下游短间隔处引入了一个终止密码子。这两种改变在N阅读框中产生了沉默变化。体外翻译研究表明这些突变完全消除了I蛋白的合成,并且对感染细胞裂解物的免疫分析证实了这一结论。MHV I突变体是有活力的,并且生长到高滴度。然而,与同基因野生型对应物相比,I突变体的噬斑大小减小,这表明I的表达赋予病毒一些轻微的生长优势。在小鼠实验感染过程中,工程化突变是稳定的,并且I突变体在感染动物的脑或肝中的复制能力与野生型没有显著差异。这些结果表明I蛋白对于MHV在组织培养或其天然宿主中的复制不是必需的。

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