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首页> 外文期刊>Journal of Virology >Molecular Genetics of Herpes Simplex Virus VI. Characterization of a Temperature-Sensitive Mutant Defective in the Expression of All Early Viral Gene Products
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Molecular Genetics of Herpes Simplex Virus VI. Characterization of a Temperature-Sensitive Mutant Defective in the Expression of All Early Viral Gene Products

机译:单纯疱疹病毒VI的分子遗传学。对所有早期病毒基因产物表达的温度敏感突变体的表征

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The herpes simplex virus 1 (HFEM) mutant tsB7 failed to express any detectable viral polypeptides and did not significantly inhibit host cell protein synthesis in infected cells maintained at the nonpermissive temperature. The mutant could complement the growth of a coinfecting temperature-sensitive mutant virus differing in plaque phenotype and thus appeared capable of penetrating doubly infected cells. The yield of tsB7 was enhanced by the coinfecting virus but not to the extent that the coinfecting virus was enhanced. Coinfection studies suggested that the tsB7 defect was complemented in trans, but poorly, by the wild-type parent and other viruses. Marker rescue of tsB7 by transfection with herpes simplex virus 2 XbaI DNA fragments mapped the mutation between 0.45 and 0.70 map units. Analysis of the DNA structure of the ts+ intertypic recombinants generated by this rescue showed that the herpes simplex virus 2 DNA substitutions all contained the region between 0.46 and 0.52 map units, thus further defining the map position of the mutation. Analyses of the polypeptides expressed by these intertypic recombinants defined the genome location of the genes specifying polypeptides 2, 6, 10, 32, 43, and 44 and indicated that the mutation maps in or near genes coding for virion structural polypeptides. This region of the genome is represented as stable transcripts and cytoplasmic mRNA only after viral DNA replication (P. C. Jones and B. Roizman, J. Virol. >31:299-314, 1979), and thus this gene appears to be a late function. These results are consistent with the ts mutation in tsB7 being in a gene coding for a virion component which functions before expression of the alpha genes early in infection. The most likely explanation is that the mutant is blocked at a stage of uncoating and the defect is complemented, although poorly, by a coinfecting virus gene product.
机译:单纯疱疹病毒1(HFEM)突变体 TS B7未能表达任何可检测的病毒多肽,并且在感染的细胞中没有显着抑制保持在非智能温度的感染细胞中的宿主细胞蛋白质合成。突变体可以补充在斑块表型中不同的辛染色温度敏感突变体病毒的生长,因此出现能够穿透双感染细胞。辛杂化病毒增强了 TS B7的产率,但不提高辛杂化病毒的程度。繁殖研究表明,野生型母体和其他病毒, TS B7缺陷额为较差。通过用疱疹病毒转染 TS B7的标记拯救病毒2 XBA I DNA片段在0.45和0.70的地图单元之间映射突变。通过该救助产生的 TS + 的DNA结构的分析表明,单纯疱疹病毒2 DNA取代均包含0.46和0.52的地图单元之间的区域,因此进一步定义突变的地图位置。这些间间重组剂表达的多肽的分析限定了指定多肽2,6,10,32,43和44的基因的基因组位置,并表明突变地图编码的基因中或附近编码病毒性结构多肽。该基因组的该区域仅在病毒DNA复制(PC jones和B. roizman,J.enver)之后仅作为稳定的转录物和细胞质mRNA表示为稳定的转录物和细胞质mRNA。> 31: 299-314,1979),因此该基因似乎是一个迟到的功能。这些结果与 Ts B7中的 Ts 突变一致,该突变在编码的基因编码中,该基因分量在感染早期表达α基因之前的作用。最可能的解释是,突变体在未涂覆的阶段被封闭,并且通过辛杂化病毒基因产物互补缺陷额度差异。

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