首页> 外文OA文献 >Temperature-Sensitive Mutations in the Putative Herpes Simplex Virus Type 1 Terminase Subunits pUL15 and pUL33 Preclude Viral DNA Cleavage/Packaging and Interaction with pUL28 at the Nonpermissive Temperature▿
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Temperature-Sensitive Mutations in the Putative Herpes Simplex Virus Type 1 Terminase Subunits pUL15 and pUL33 Preclude Viral DNA Cleavage/Packaging and Interaction with pUL28 at the Nonpermissive Temperature▿

机译:假定的单纯性疱疹病毒1型终止酶亚基pUL15和pUL33中的温度敏感突变阻止了病毒DNA的切割/包装以及在非容许温度下与pUL28的相互作用▿

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摘要

Terminases comprise essential components of molecular motors required to package viral DNA into capsids in a variety of DNA virus systems. Previous studies indicated that the herpes simplex virus type 1 UL15 protein (pUL15) interacts with the pUL28 moiety of a pUL28-pUL33 complex to form the likely viral terminase. In the current study, a novel temperature-sensitive mutant virus was shown to contain a mutation in UL33 codon 61 predicted to change threonine to proline. At the nonpermissive temperature, this virus, designated ts8-22, replicated viral DNA and produced capsids that became enveloped at the inner nuclear membrane but failed to form plaques or to cleave or package viral DNA. Incubation at the nonpermissive temperature also precluded coimmunoprecipitation of UL33 protein with its normal interaction partners encoded by UL28 and UL15 in ts8-22-infected cells and with pUL28 in transient-expression assays. Moreover, a temperature-sensitive mutation in UL15 precluded coimmunoprecipitation of pUL15 with the UL28 and UL33 proteins at the nonpermissive temperature. We conclude that interactions between putative terminase components are tightly linked to successful viral DNA cleavage and packaging.
机译:终止酶包括分子病毒的基本成分,这些分子马达将病毒DNA包装到各种DNA病毒系统的衣壳中。先前的研究表明,单纯疱疹病毒1型UL15蛋白(pUL15)与pUL28-pUL33复合体的pUL28部分相互作用,形成可能的病毒末端酶。在当前的研究中,一种新型的温度敏感突变病毒显示出在UL33密码子61中包含一个突变,该突变预计会将苏氨酸变为脯氨酸。在非许可温度下,命名为ts8-22的这种病毒复制了病毒DNA,并产生衣壳,衣壳被包裹在内核膜上,但未能形成噬菌斑或裂解或包装病毒DNA。在不允许的温度下孵育还排除了UL33蛋白与由ts8-22感染的细胞中的UL28和UL15编码的正常相互作用伙伴以及在瞬时表达测定中与pUL28的共免疫沉淀的共免疫沉淀。此外,UL15中的温度敏感突变阻止了pUL15与UL28和UL33蛋白在非容许温度下的免疫共沉淀。我们得出结论,假定的末端酶组分之间的相互作用与成功的病毒DNA切割和包装紧密相关。

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