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Cathepsin B Mediates Cleavage of Herpes Simplex Virus Type 1 Origin Binding Protein (OBP) To Yield OBPC-1, and Cleavage Is Dependent upon Viral DNA Replication▿

机译:组织蛋白酶B介导1型单纯疱疹病毒起源结合蛋白(OBP)的切割产生OBPC-1,并且切割取决于病毒DNA复制▿

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摘要

Although the seven viral proteins required for herpes simplex virus type 1 (HSV-1) DNA replication have been identified, the mechanism by which viral DNA synthesis is regulated is unclear. HSV-1 DNA replication is thought to occur in two stages: origin-dependent DNA replication (stage I) mediated by the origin binding protein (OBP), followed by origin- and OBP-independent DNA replication (stage II). The mechanism that facilitates the switch from stage I to stage II is unknown; however, it must involve the loss of OBP function or OBP itself from the replication initiation complex. Previous studies from this laboratory identified a transcript (UL8.5) and protein (OBPC) that are in frame with and comprise the C terminus of the gene specifying OBP. Because of its DNA binding ability, OBPC has been hypothesized to mediate the switch from stage I to stage II. Here, we identify a second protein (OBPC-2) that is also in frame with the C terminus of OBP but comprises a smaller portion of the protein. We demonstrate that the protein originally identified (OBPC-1) is a cathepsin B-mediated cleavage product of OBP, while OBPC-2 may be the product of the UL8.5 transcript. We further demonstrate that the cleavage of OBP to yield OBPC-1 is dependent upon viral DNA replication. These results suggest that cleavage may be a mechanism by which OBP levels and/or activity are regulated during infection.
机译:尽管已经确定了单纯疱疹病毒1型(HSV-1)DNA复制所需的7种病毒蛋白,但尚不清楚调节病毒DNA合成的机制。 HSV-1 DNA复制被认为发生在两个阶段:由原点结合蛋白(OBP)介导的原点依赖性DNA复制(阶段I),然后是非原点和OBP依赖性DNA复制(阶段II)。促进从阶段I转换到阶段II的机制尚不清楚;但是,它必须涉及复制起始复合体导致的OBP功能丧失或OBP本身。来自该实验室的先前研究鉴定了与指定OBP的基因的C末端一致并包含其C末端的转录本(UL8.5)和蛋白质(OBPC)。由于其具有DNA结合能力,已假设OBPC介导从I期到II期的转换。在这里,我们确定了第二个蛋白(OBPC-2),它也与OBP的C末端相符,但包含该蛋白的较小部分。我们证明最初识别的蛋白质(OBPC-1)是组织蛋白酶B介导的OBP裂解产物,而OBPC-2可能是UL8.5转录产物。我们进一步证明,OBP的裂解产生OBPC-1取决于病毒DNA复制。这些结果表明切割可能是在感染期间调节OBP水平和/或活性的机制。

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