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用一个3.2kb的克隆DNA片段部分挽救单纯疱疹病毒神经毒力。

Partial rescue of herpes simplex virus neurovirulence with a 3.2 kb cloned DNA fragment.

作者信息

Thompson R L, Wagner E K

机构信息

Department of Microbiology and Molecular Genetics, University of Cincinnati, Ohio 45267-0524.

出版信息

Virus Genes. 1988 Jun;1(3):261-73. doi: 10.1007/BF00572705.

Abstract

A herpes simplex virus (HSV) intertypic recombinant (RE6) has been previously shown to be non-neurovirulent following direct intracranial inoculation of mice. An in vitro recombination/in vivo selection strategy was employed to further characterize the gene or genes responsible for the avirulence of this mutant. It was found that RE6 could be converted to a lethal virus by incorporation of wild-type HSV-1 sequences mapping between 0.698 and 0.721 map units. Restriction endonuclease and Southern blot analysis revealed that viral recombinants which incorporated at least part of the cloned 17syn+ sequences were selected by passage in mouse brains in vivo. The recombinants generated with this fragment were at least 50-fold more neuroviurlent than RE6, as determined by the plaque forming unit to lethal dose 50% assay. Further, they displayed a significant increase in ability to replicate in mouse brain tissue following intracranial inoculation. However, these recombinants did not display a replication advantage over RE6 in cultured mouse cells at 38.5 degrees C. Thus, the defect present within this region of the RE6 genome specifically affects replication in the nervous system. In the accompanying paper we analyze the RNA transcription and DNA sequence in this portion of the RE6 and parental strain genomes.

摘要

先前已证明,单纯疱疹病毒(HSV)的一种型间重组体(RE6)在直接颅内接种小鼠后无神经毒性。采用体外重组/体内筛选策略进一步鉴定负责该突变体无毒力的一个或多个基因。结果发现,通过掺入位于0.698至0.721图谱单位之间的野生型HSV-1序列,RE6可转化为致死性病毒。限制性内切酶和Southern印迹分析显示,在小鼠脑内传代时,选择了掺入至少部分克隆的17syn+序列的病毒重组体。通过噬斑形成单位与致死剂量50%测定法确定,用该片段产生的重组体的神经毒性比RE6至少高50倍。此外,颅内接种后,它们在小鼠脑组织中的复制能力显著增强。然而,在38.5摄氏度下,这些重组体在培养的小鼠细胞中并未表现出相对于RE6的复制优势。因此,RE6基因组该区域存在的缺陷特异性地影响在神经系统中的复制。在随附的论文中,我们分析了RE6和亲本株基因组这一部分的RNA转录和DNA序列。

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