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麻疹病毒V蛋白的表达与致病性及病毒RNA合成的调控相关。

Expression of measles virus V protein is associated with pathogenicity and control of viral RNA synthesis.

作者信息

Tober C, Seufert M, Schneider H, Billeter M A, Johnston I C, Niewiesk S, ter Meulen V, Schneider-Schaulies S

机构信息

Institute for Virology and Immunobiology, University of Würzburg, D-97078 Würzburg, Germany.

出版信息

J Virol. 1998 Oct;72(10):8124-32. doi: 10.1128/JVI.72.10.8124-8132.1998.

Abstract

Nonstructural proteins encoded by measles virus (MV) include the V protein which is translated from an edited P mRNA. V protein is not associated with intracellular or released viral particles and has recently been found to be dispensable for MV propagation in cell culture (H. Schneider, K. Kaelin, and M. A. Billeter, Virology 227:314-322, 1997). Using recombinant MVs (strain Edmonston [ED]) genetically engineered to overexpress V protein (ED-V+) or to be deficient for V protein (ED-V-), we found that in the absence of V both MV-specific proteins and RNAs accumulated to levels higher than those in the parental MV molecular clone (ED-tag), whereas MV-specific gene expression was strongly attenuated in human U-87 glioblastomas cells after infection with ED-V+. The titers of virus released from these cells 48 h after infection with either V mutant virus were lower than those from cells infected with ED-tag. Similarly, significantly reduced titers of infectious virus were reisolated from lung tissue of cotton rats (Sigmodon hispidus) after intranasal infection with both editing mutants compared to titers isolated from ED-tag-infected animals. In cell culture, expression of V protein led to a redistribution of MV N protein in doubly transfected Cos-7 cells, indicating that these proteins form heterologous complexes. This interaction was further confirmed by using a two-hybrid approach with both proteins expressed as Gal4 or VP16 fusion products. Moreover, V protein efficiently competed complexes formed between MV N and P proteins. These findings indicate that V protein acts to balance accumulation of viral gene products in cell culture, and this may be dependent on its interaction with MV N protein. Furthermore, expression of V protein may contribute to viral pathogenicity in vivo.

摘要

麻疹病毒(MV)编码的非结构蛋白包括从经过编辑的P mRNA翻译而来的V蛋白。V蛋白不与细胞内或释放的病毒颗粒相关联,并且最近发现其对于MV在细胞培养中的增殖并非必需(H. Schneider、K. Kaelin和M. A. Billeter,《病毒学》227:314 - 322,1997年)。使用经过基因工程改造以过表达V蛋白(ED - V +)或缺乏V蛋白(ED - V -)的重组MV(埃德蒙斯顿株[ED]),我们发现,在没有V蛋白的情况下,MV特异性蛋白和RNA的积累水平高于亲本MV分子克隆(ED - tag)中的水平,而在用ED - V +感染人U - 87胶质母细胞瘤细胞后,MV特异性基因表达强烈减弱。用任一V突变病毒感染这些细胞48小时后释放的病毒滴度低于用ED - tag感染的细胞释放的病毒滴度。同样,与从感染ED - tag的动物中分离的滴度相比,用两种编辑突变体鼻内感染棉鼠(棉鼠属)的肺组织后重新分离出的感染性病毒滴度显著降低。在细胞培养中,V蛋白的表达导致在双重转染的Cos - 7细胞中MV N蛋白重新分布,表明这些蛋白形成异源复合物。通过使用双杂交方法,将两种蛋白表达为Gal4或VP16融合产物,进一步证实了这种相互作用。此外,V蛋白有效地竞争了MV N蛋白和P蛋白之间形成的复合物。这些发现表明,V蛋白在细胞培养中起到平衡病毒基因产物积累的作用,这可能取决于其与MV N蛋白的相互作用。此外,V蛋白的表达可能在体内对病毒致病性有贡献。

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