首页> 外文OA文献 >Mutations That Decrease DNA Binding of the Processivity Factor of the Herpes Simplex Virus DNA Polymerase Reduce Viral Yield, Alter the Kinetics of Viral DNA Replication, and Decrease the Fidelity of DNA Replication▿
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Mutations That Decrease DNA Binding of the Processivity Factor of the Herpes Simplex Virus DNA Polymerase Reduce Viral Yield, Alter the Kinetics of Viral DNA Replication, and Decrease the Fidelity of DNA Replication▿

机译:减少单纯疱疹病毒DNA聚合酶持续性因子的DNA结合的突变会降低病毒产量,改变病毒DNA复制的动力学并降低DNA复制的保真度▿

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摘要

The processivity subunit of the herpes simplex virus DNA polymerase, UL42, is essential for viral replication and possesses both Pol- and DNA-binding activities. Previous studies demonstrated that the substitution of alanine for each of four arginine residues, which reside on the positively charged surface of UL42, resulted in decreased DNA binding affinity and a decreased ability to synthesize long-chain DNA by the polymerase. In this study, the effects of each substitution on the production of viral progeny, viral DNA replication, and DNA replication fidelity were examined. Each substitution mutant was able to complement the replication of a UL42 null mutant in transient complementation assays and to support the replication of plasmid DNA containing herpes simplex virus type 1 (HSV-1) origin sequences in transient DNA replication assays. Mutant viruses containing each substitution and a lacZ insertion in a nonessential region of the genome were constructed and characterized. In single-cycle growth assays, the mutants produced significantly less progeny virus than the control virus containing wild-type UL42. Real-time PCR assays revealed that these UL42 mutants synthesized less viral DNA during the early phase of infection. Interestingly, during the late phase of infection, the mutant viruses synthesized larger amounts of viral DNA than the control virus. The frequencies of mutations of the virus-borne lacZ gene increased significantly in the substitution mutants compared to those observed for the control virus. These results demonstrate that the reduced DNA binding of UL42 is associated with significant effects on virus yields, viral DNA replication, and replication fidelity. Thus, a processivity factor can influence replication fidelity in mammalian cells.
机译:单纯疱疹病毒DNA聚合酶UL42的合成亚基对于病毒复制至关重要,并具有Pol和DNA结合活性。先前的研究表明,丙氨酸被UL42带正电荷的表面上的四个精氨酸残基取代,导致DNA结合亲和力下降,聚合酶合成长链DNA的能力下降。在这项研究中,检查了每个取代对病毒后代产生,病毒DNA复制和DNA复制保真度的影响。每个替代突变体都能够在瞬时互补测定中补充UL42空突变体的复制,并在瞬时DNA复制测定中支持包含单纯疱疹病毒1型(HSV-1)起源序列的质粒DNA的复制。构建并鉴定了在基因组非必需区域中包含每个取代和lacZ插入的突变病毒。在单周期生长试验中,突变体产生的后代病毒比含有野生型UL42的对照病毒少得多。实时PCR分析显示,这些UL42突变体在感染初期合成的病毒DNA较少。有趣的是,在感染后期,突变病毒合成的病毒DNA数量要多于对照病毒。与观察到的对照病毒相比,在替代突变体中病毒携带的lacZ基因的突变频率显着增加。这些结果表明,UL42的DNA结合减少与病毒产量,病毒DNA复制和复制保真度的显着影响有关。因此,持续性因素可以影响哺乳动物细胞中的复制保真度。

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