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1型单纯疱疹病毒糖蛋白B诱导的融合需要UL45基因产物。

The UL45 gene product is required for herpes simplex virus type 1 glycoprotein B-induced fusion.

作者信息

Haanes E J, Nelson C M, Soule C L, Goodman J L

机构信息

Department of Medicine, University of Minnesota, Minneapolis 55455.

出版信息

J Virol. 1994 Sep;68(9):5825-34. doi: 10.1128/JVI.68.9.5825-5834.1994.

Abstract

Herpes simplex virus type 1 (HSV-1) syncytial (syn) mutants cause formation of giant polykaryocytes and have been utilized to identify genes promoting or suppressing cell fusion. We previously described an HSV-1 recombinant, F1 (J.L. Goodman, M. L. Cook, F. Sederati, K. Izumi, and J. G. Stevens, J. Virol. 63:1153-1161, 1989), which has unique virulence properties and a syn mutation in the carboxy terminus of glycoprotein B (gB). We attempted to replace this single-base-pair syn mutation through cotransfection with a 379-bp PCR-generated fragment of wild-type gB. The nonsyncytial viruses isolated were shown by DNA sequencing not to have acquired the expected wild-type gB sequence. Instead, they had lost their cell-cell fusion properties because of alterations mapping to the UL45 gene. The mutant UL45 gene is one nonsyncytial derivative of F1, A4B, was found to have a deletion of a C at UL45 nucleotide 230, resulting in a predicted frame shift and termination at 92 rather than 172 amino acids. Northern (RNA) analysis showed that the mutant UL45 gene was normally transcribed. However, Western immunoblotting showed no detectable UL45 gene product from A4B or from another similarly isolated nonsyncytial F1 derivative, A61B, while another such virus, 1ACSS, expressed reduced amounts of UL45. When A4B was cotransfected with the wild-type UL45 gene, restoration of UL45 expression correlated with restoration of syncytium formation. Conversely, cloned DNA fragments containing the mutant A4B UL45 gene transferred the loss of cell-cell fusion to other gB syn mutants, rendering them UL45 negative and nonsyncytial. We conclude that normal UL45 expression is required to allow cell fusion induced by gB syn mutants and that the nonessential UL45 protein may play an important role as a mediator of fusion events during HSV-1 infection.

摘要

1型单纯疱疹病毒(HSV-1)的合胞体(syn)突变体可导致巨型多核细胞的形成,并已被用于鉴定促进或抑制细胞融合的基因。我们之前描述过一种HSV-1重组体F1(J.L.古德曼、M.L.库克、F.塞德拉蒂、K.泉和J.G.史蒂文斯,《病毒学杂志》63:1153 - 1161,1989年),它具有独特的毒力特性,且在糖蛋白B(gB)的羧基末端存在一个合胞体突变。我们试图通过与野生型gB的379个碱基对的PCR扩增片段共转染来替换这个单碱基对的合胞体突变。经DNA测序显示,分离得到的非合胞体病毒并未获得预期的野生型gB序列。相反,由于映射到UL45基因的改变,它们失去了细胞间融合特性。突变的UL45基因是F1的一种非合胞体衍生物A4B,在UL45核苷酸230处发现有一个C缺失,导致预测的移码并在92个氨基酸处终止,而不是正常的172个氨基酸。Northern(RNA)分析表明,突变的UL45基因正常转录。然而,Western免疫印迹显示,在A4B或另一个类似分离得到的非合胞体F1衍生物A61B中未检测到UL45基因产物,而另一种这样的病毒1ACSS表达的UL45量减少。当A4B与野生型UL45基因共转染时,UL45表达的恢复与合胞体形成的恢复相关。相反,包含突变的A4B UL45基因的克隆DNA片段将细胞间融合的丧失转移到其他gB合胞体突变体上,使其变为UL45阴性且非合胞体。我们得出结论,正常的UL45表达是gB合胞体突变体诱导细胞融合所必需的,并且非必需的UL45蛋白可能作为HSV-1感染期间融合事件的介质发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2667/236987/b22873812095/jvirol00018-0507-a.jpg

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