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水疱性口炎病毒新泽西血清型的基质蛋白在第48位和第51位含有甲硫氨酸到精氨酸的替换,可使宿主细胞基因表达接近正常。

Matrix protein of VSV New Jersey serotype containing methionine to arginine substitutions at positions 48 and 51 allows near-normal host cell gene expression.

作者信息

Kim Gyoung Nyoun, Kang C Yong

机构信息

Department of Microbiology and Immunology, The University of Western Ontario, Siebens-Drake Research Institute, London, Ontario, Canada N6G 2V4.

出版信息

Virology. 2007 Jan 5;357(1):41-53. doi: 10.1016/j.virol.2006.07.022. Epub 2006 Sep 7.

Abstract

The matrix (M) protein of vesicular stomatitis virus (VSV) plays significant roles in the replication of VSV through its involvement in the assembly of virus particles as well as by facilitating the evasion of innate host cell defense mechanisms. The presence of methionine at position 51 (M51) of the matrix (M) protein of the VSV Indiana serotype (VSV(Ind)) has been proven to be crucial for cell rounding and inhibition of host cell gene expression. The M protein of VSV(Ind) with the substitution of M51 with arginine (R:M51R) results in the loss of inhibitory effects on host cell gene expression. The VSV(Ind) expressing the M(M51R) protein became the attractive oncolytic virus which is safer and more tumor-specific because the normal cells can clear the mutant VSV(Ind) easily but tumor cells are susceptible to the virus because a variety of tumor cells lack innate antiviral activities. We have studied the role of the methionines at positions 48 and 51 of the M protein of the New Jersey serotype of VSV (VSV(NJ)) in the induction of cytopathic effects (CPE) and host cell gene expression. We have generated human embryonic kidney 293 cell lines inducibly expressing M proteins with M to R mutations at positions 48 and 51, either separately or together as a double mutant, and examined expression of heat shock protein 70 (HSP70) as an indicator of host cell gene expression. We have also generated recombinant VSV(NJ) encoding the mutant M proteins M(M48R) or M(M48R+M51R) for the first time and tested for the expression of HSP70 in infected cells. Our results demonstrated that the M51 of VSV(NJ) M proteins has a major role in cell rounding and in suppressing the host cell gene expression either when the M protein was expressed alone in inducible cell lines or when expressed together with other VSV proteins by the recombinant VSV(NJ). Amino acid residue M48 may also have some role in cell rounding and in the inhibitory effects of VSV(NJ) M, which was demonstrated by the fact that the cell line expressing the double substitution mutant M(M48R+M51R) exhibited the least cytopathic effects and the least inhibitory effect on host cell gene expression.

摘要

水泡性口炎病毒(VSV)的基质(M)蛋白在VSV复制过程中发挥着重要作用,它参与病毒颗粒的组装,并有助于逃避宿主细胞的天然防御机制。已证明VSV印第安纳血清型(VSV(Ind))的基质(M)蛋白第51位(M51)的甲硫氨酸对于细胞变圆和抑制宿主细胞基因表达至关重要。将VSV(Ind)的M蛋白中M51替换为精氨酸(R:M51R)后,对宿主细胞基因表达的抑制作用丧失。表达M(M51R)蛋白的VSV(Ind)成为一种有吸引力的溶瘤病毒,它更安全且更具肿瘤特异性,因为正常细胞能够轻松清除突变的VSV(Ind),而多种肿瘤细胞由于缺乏天然抗病毒活性而对该病毒敏感。我们研究了VSV新泽西血清型(VSV(NJ))的M蛋白第48位和第51位的甲硫氨酸在诱导细胞病变效应(CPE)和宿主细胞基因表达中的作用。我们构建了可诱导表达M蛋白的人胚肾293细胞系,这些M蛋白在第48位和第51位分别或同时发生M到R的突变,作为双突变体,并检测热休克蛋白70(HSP70)的表达作为宿主细胞基因表达的指标。我们还首次构建了编码突变M蛋白M(M48R)或M(M48R+M51R)的重组VSV(NJ),并检测感染细胞中HSP70的表达。我们的结果表明,当M蛋白单独在可诱导细胞系中表达或通过重组VSV(NJ)与其他VSV蛋白一起表达时,VSV(NJ) M蛋白的M51在细胞变圆和抑制宿主细胞基因表达中起主要作用。氨基酸残基M48在细胞变圆和VSV(NJ) M的抑制作用中可能也有一定作用,这一事实表明,表达双替换突变体M(M48R+M51R)的细胞系表现出最小的细胞病变效应和对宿主细胞基因表达的最小抑制作用。

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