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对1型单纯疱疹病毒条件性抗免疫细胞溶解突变体的遗传和表型分析。

Genetic and phenotypic analysis of herpes simplex virus type 1 mutants conditionally resistant to immune cytolysis.

作者信息

Pancake B A, Aschman D P, Schaffer P A

出版信息

J Virol. 1983 Sep;47(3):568-85. doi: 10.1128/JVI.47.3.568-585.1983.

Abstract

Nine temperature-sensitive (ts) mutants of herpes simplex virus type 1 selected for their inability to render cells susceptible to immune cytolysis after infection at the nonpermissive temperature have been characterized genetically and phenotypically. The mutations in four mutants were mapped physically by marker rescue and assigned to functional groups by complementation analysis. In an effort to determine the molecular basis for cytolysis resistance, cells infected with each of the nine mutants were monitored for the synthesis of viral glycoprotein in total cell extracts and for the presence of these glycoproteins in plasma membranes. The four mutants whose ts mutations were mapped were selected with polypeptide-specific antiserum to glycoproteins gA and gB; however, three of the four mutations mapped to DNA sequences outside the limits of the structural gene specifying these glycoproteins. Combined complementation and phenotypic analysis indicates that the fourth mutation also lies elsewhere. The ts mutations in five additional cytolysis-resistant mutants could not be rescued with single cloned DNA fragments representing the entire herpes simplex virus type 1 genome, suggesting that these mutants may possess multiple mutations. Complementation tests with the four mutants whose ts lesions had been mapped physically demonstrated that each represents a new viral gene. Examination of mutant-infected cells at the nonpermissive temperature for the presence of viral glycoproteins in total cell extracts and in membranes at the cell surface demonstrated that (i) none of the five major viral glycoproteins was detected in extracts of cells infected with one mutant, suggesting that this mutant is defective in a very early function; (ii) cells infected with six of the nine mutants exhibited greatly reduced levels of all the major viral glycoproteins at the infected cell surface, indicating that these mutants possess defects in the synthesis or processing of viral glycoproteins; and (iii) in cells infected with one mutant, all viral glycoproteins were precipitable at the surface of the infected cell, despite the resistance of these cells to cytolysis. This mutant is most likely mutated in a gene affecting a late stage in glycoprotein processing, leading to altered presentation of glycoproteins at the plasma membrane. The finding that the synthesis of both gB and gC was affected coordinately in cells infected with six of the nine mutants suggests that synthesis of these two glycoproteins, their transport to the cell surface, or their insertion into plasma membranes is coordinately regulated.

摘要

已对单纯疱疹病毒1型的9个温度敏感(ts)突变体进行了遗传和表型特征分析,这些突变体因在非允许温度下感染后无法使细胞易于发生免疫细胞溶解而被挑选出来。通过标记拯救对4个突变体中的突变进行了物理定位,并通过互补分析将其归入功能组。为了确定细胞溶解抗性的分子基础,监测了感染9个突变体中每个突变体的细胞在总细胞提取物中病毒糖蛋白的合成情况以及这些糖蛋白在质膜中的存在情况。用针对糖蛋白gA和gB的多肽特异性抗血清挑选出了ts突变已被定位的4个突变体;然而,4个突变中的3个位于指定这些糖蛋白的结构基因范围之外的DNA序列上。互补和表型分析相结合表明,第4个突变也位于其他位置。另外5个细胞溶解抗性突变体中的ts突变无法用代表整个单纯疱疹病毒1型基因组的单个克隆DNA片段拯救,这表明这些突变体可能具有多个突变。对ts损伤已被物理定位的4个突变体进行的互补试验表明,每个突变体都代表一个新的病毒基因。在非允许温度下检查突变体感染的细胞在总细胞提取物和细胞表面膜中病毒糖蛋白的存在情况表明:(i)在感染一个突变体的细胞提取物中未检测到5种主要病毒糖蛋白中的任何一种,这表明该突变体在非常早期的功能上存在缺陷;(ii)感染9个突变体中的6个的细胞在感染细胞表面所有主要病毒糖蛋白的水平大大降低,这表明这些突变体在病毒糖蛋白的合成或加工方面存在缺陷;(iii)在感染一个突变体的细胞中,尽管这些细胞对细胞溶解具有抗性,但所有病毒糖蛋白在感染细胞表面均可沉淀。该突变体很可能在一个影响糖蛋白加工后期阶段的基因中发生了突变,导致糖蛋白在质膜上的呈现发生改变。在感染9个突变体中的6个的细胞中,gB和gC的合成均受到协同影响,这一发现表明这两种糖蛋白的合成、向细胞表面的转运或插入质膜的过程受到协同调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c84/255298/54c6e38b04f7/jvirol00144-0203-a.jpg

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