首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Unwinding of the box I element of a herpes simplex virus type 1 origin by a complex of the viral origin binding protein single-strand DNA binding protein and single-stranded DNA
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Unwinding of the box I element of a herpes simplex virus type 1 origin by a complex of the viral origin binding protein single-strand DNA binding protein and single-stranded DNA

机译:通过病毒起源结合蛋白单链DNA结合蛋白和单链DNA的复合体解开1型单纯疱疹病毒起源的box I元素

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摘要

The herpes simplex virus type 1 (HSV-1) genome contains three origins of replication: oriL and two copies of oriS. These origins contain specific sequences, box I and box II, linked by an AT-rich segment, that are recognized by an HSV-1-encoded origin binding protein (UL9 protein) which also possesses DNA helicase activity. Despite its intrinsic helicase activity, the UL9 protein is unable to unwind oriS or the box I element of oriS, either in the presence or absence of the HSV-1-encoded single-strand DNA binding protein, ICP8. However, a complex of the UL9 protein and ICP8 can unwind box I if it contains a 3′ single-stranded tail at least 18 nt in length positioned downstream of box I. These findings suggest a model for the initiation of HSV-1 DNA replication in which a complex consisting of the UL9 protein bound to box I, and ICP8 bound to single-stranded DNA generated at the A+T rich linker, perhaps as a consequence of transcription, unwinds an HSV-1 origin of replication to provide access to the replication machinery with the consequent initiation of viral DNA replication. This mode of unwinding is distinct from that observed for other animal viruses—e.g., simian virus 40 or bovine papilloma virus—in which the initiator protein, T antigen, or E1 protein alone, unwinds elements of the origin sequence, and the single-strand DNA binding protein serves only to keep the separated strands apart.
机译:1型单纯疱疹病毒(HSV-1)基因组包含三个复制起点:oriL和oriS的两个副本。这些起源包含通过富含AT的片段连接的特定序列,即第I框和第II框,这些序列被具有DNA解旋酶活性的HSV-1编码的起源结合蛋白(UL9蛋白)识别。尽管具有固有的解旋酶活性,但无论是否存在HSV-1编码的单链DNA结合蛋白ICP8,UL9蛋白都无法解开oriS或oriS的box I元素。但是,如果UL9蛋白和ICP8的复合物包含位于框I下游的至少18 nt长的3'单链尾巴,则它可以解开框I。这些发现提示了启动HSV-1 DNA复制的模型其中由框9结合的UL9蛋白和与在富含A + T的接头处产生的单链DNA结合的ICP8组成的复合物解开了HSV-1复制起点以提供对复制机制,从而引发病毒DNA复制。这种解开模式与其他动物病毒(例如猿猴病毒40或牛乳头瘤病毒)所观察到的模式不同,在该动物病毒中,单独的起始蛋白,T抗原或E1蛋白解开原始序列的元素和单链DNA结合蛋白仅用于保持分开的链分开。

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