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利用一组重组杆状病毒组装单纯疱疹病毒1型衣壳

Assembly of herpes simplex virus type 1 capsids using a panel of recombinant baculoviruses.

作者信息

Tatman J D, Preston V G, Nicholson P, Elliott R M, Rixon F J

机构信息

Medical Research Council Virology Unit, Institute of Virology, Glasgow, U.K.

出版信息

J Gen Virol. 1994 May;75 ( Pt 5):1101-13. doi: 10.1099/0022-1317-75-5-1101.

Abstract

Immature or B capsids of herpes simplex virus type 1 (HSV-1) are composed of seven proteins encoded by six viral genes. The proteins encoded by UL18 (VP23), UL19 (VP5), UL35 (VP26) and UL38 (VP19C) are components of the outer capsid shell whereas those specified by UL26 (VP21 and VP24) and UL26.5 (VP22a), are involved in scaffold formation. We have used a panel of recombinant baculoviruses, each expressing one of the capsid protein genes, to examine the requirements for capsid assembly. Coexpression of the six genes in insect cells resulted in the formation of capsids that were indistinguishable in appearance and protein composition from those made during HSV-1 infection of mammalian cells. This demonstrates that the proteins encoded by the known capsid genes contain all the structural information necessary for capsid assembly and that other virus-encoded proteins are not required for this process. Omission of single recombinant baculoviruses from this system allowed the role of individual HSV-1 proteins in capsid assembly to be determined. Thus, capsid assembly did not take place in the absence of VP23, VP5 or VP19C, whereas lack of VP26 had no discernible effect on capsid formation. Capsids assembled in the absence of the UL26 gene products had a large-cored phenotype resembling that previously described for the HSV-1 mutant ts1201 which has a lesion in this gene. Some apparently intact capsid shells were also made in the absence of the major scaffolding protein, VP22a, whereas the omission of both UL26 and UL26.5 resulted in the appearance of large numbers of partial and deformed capsid shells.

摘要

1型单纯疱疹病毒(HSV - 1)的未成熟或B型衣壳由六个病毒基因编码的七种蛋白质组成。由UL18(VP23)、UL19(VP5)、UL35(VP26)和UL38(VP19C)编码的蛋白质是外衣壳的组成部分,而由UL26(VP21和VP24)和UL26.5(VP22a)指定的蛋白质则参与支架形成。我们使用了一组重组杆状病毒,每个病毒表达一种衣壳蛋白基因,以研究衣壳组装的要求。六个基因在昆虫细胞中的共表达导致了衣壳的形成,这些衣壳在外观和蛋白质组成上与HSV - 1感染哺乳动物细胞时产生的衣壳没有区别。这表明已知衣壳基因编码的蛋白质包含衣壳组装所需的所有结构信息,并且该过程不需要其他病毒编码的蛋白质。从该系统中省略单个重组杆状病毒可以确定单个HSV - 1蛋白在衣壳组装中的作用。因此,在没有VP23、VP5或VP19C的情况下不会发生衣壳组装,而缺少VP26对衣壳形成没有明显影响。在没有UL26基因产物的情况下组装的衣壳具有大核心表型,类似于先前描述的在该基因中有损伤的HSV - 1突变体ts1201。在没有主要支架蛋白VP22a的情况下也形成了一些明显完整的衣壳壳,而同时省略UL26和UL26.5则导致出现大量部分和变形的衣壳壳。

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