首页> 美国卫生研究院文献>Journal of Virology >Equimolar generation of the four possible arrangements of adjacent L components in herpes simplex virus type 1 replicative intermediates.
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Equimolar generation of the four possible arrangements of adjacent L components in herpes simplex virus type 1 replicative intermediates.

机译:等摩尔生成1型单纯疱疹病毒复制中间体中相邻L组分的四种可能排列。

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摘要

Herpes simplex virus type 1 (HSV-1) replication generates high-molecular-weight intermediates containing branched DNA and concatemers carrying adjacent genomes with inverted L components. We have studied replicative intermediates generated by (i) wild-type HSV-1; (ii) 5dl1.2, an ICP27 null mutant which fails to synthesize normal amounts of DNA and late proteins; (iii) RBMu3, a mutant containing a deletion in the inverted repeats which fails to generate genomic isomers; and (iv) amplicon plasmids and vectors which contain no inverted sequences. Replication intermediates were analyzed by pulsed-field gel electrophoresis, after restriction enzyme digestion of infected-cell DNA, followed by blot hybridization. DNA fragments were statistically quantified after phosphorimaging. We observed that (i) the four possible configurations of L components of two adjacent genomes in the concatemers are present at equimolar amounts at any time during virus replication, (ii) ICP27 is not required for inversions or for branched DNA to occur, and (iii) replication intermediates of both RBMu3 mutant and amplicon plasmids or vectors do contain branched structures, although the concatemers they generate contain no inversions. These data indicate that inversions are generated by a mechanism intrinsically linked to virus DNA replication, most likely homologous recombination between inverted repeats. Branched structures are detected in all replicating molecules, including those that do not invert, suggesting that they are constitutively linked to virus DNA synthesis. Our results are consistent with the notion that the four HSV-1 genomic isomers are generated by alternative cleavage frames of replication concatemers containing equimolar amounts of L-component inversions.
机译:1型单纯疱疹病毒(HSV-1)复制可产生高分子量中间体,该中间体包含分支DNA和携带带有倒L成分的相邻基因组的串联体。我们研究了由(i)野生型HSV-1产生的复制中间体; (ii)5dl1.2,ICP27无效突变体,无法合成正常量的DNA和晚期蛋白质; (iii)RBMu3,在反向重复序列中含有缺失而不能产生基因组异构体的突变体; (iv)不包含反向序列的扩增子质粒和载体。限制性内切酶消化感染细胞的DNA后,通过脉冲场凝胶电泳分析复制中间体,然后进行印迹杂交。荧光成像后对DNA片段进行统计学定量。我们观察到(i)在病毒复制过程中的任何时间,串联分子中两个相邻基因组的L组分的四种可能构型均以等摩尔量存在;(ii)转化或发生分支DNA不需要ICP27,并且( iii)RBMu3突变体和扩增子质粒或载体的复制中间体均含有分支结构,尽管它们产生的连接体不包含任何倒置。这些数据表明,倒转是由与病毒DNA复制内在联系的机制产生的,最有可能是反向重复之间的同源重组。在所有复制分子中都检测到支链结构,包括那些不会反转的分子,表明它们与病毒DNA合成组成性连接。我们的结果与以下观点一致:四个HSV-1基因组异构体是通过包含等摩尔量的L组分倒置的复制连接体的替代切割框架生成的。

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