首页> 外文期刊>The Journal of biological chemistry >Replisome-mediated Translesion Synthesis and Leading Strand Template Lesion Skipping Are Competing Bypass Mechanisms
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Replisome-mediated Translesion Synthesis and Leading Strand Template Lesion Skipping Are Competing Bypass Mechanisms

机译:典型介导的翻塑合成和前导股模板病变跳跃是竞争旁路机构

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A number of different enzymatic pathways have evolved to ensure that DNA replication can proceed past template base damage. These pathways include lesion skipping by the replisome, replication fork regression followed by either correction of the damage and origin-independent replication restart or homologous recombination-mediated restart of replication downstream of the lesion, and bypass of the damage by a translesion synthesis DNA polymerase. We report here that of two translesion synthesis polymerases tested, only DNA polymerase IV, not DNA polymerase II, could engage productively with the Escherichia coli replisome to bypass leading strand template damage, despite the fact that both enzymes are shown to be interacting with the replicase. Inactivation of the 3′ → 5′ proofreading exonuclease of DNA polymerase II did not enable bypass. Bypass by DNA polymerase IV required its ability to interact with the β clamp and act as a translesion polymerase but did not require its “little finger” domain, a secondary region of interaction with the β clamp. Bypass by DNA polymerase IV came at the expense of the inherent leading strand lesion skipping activity of the replisome, indicating that they are competing reactions.
机译:许多不同的酶促途径已经进化以确保DNA复制可以进行过去的模板损伤。这些途径包括由额相跳过的病变,复制叉回归,然后校正损伤和始于无关的复制重启或同源重组介导的重复的重复,并通过翻塑合成DNA聚合酶旁路损伤。在这里,在这里报道,在测试的两个转过硫化合成聚合酶中,只有DNA聚合酶IV,而不是DNA聚合酶II可以用大肠杆菌重新替换,尽管两种酶被显示与复制酶相互作用,但才能绕过前导的链模板损伤。 。 DNA聚合酶II的3'→5'校样外切除核酸酶的失活未绕过。 DNA聚合酶IV的旁路需要其与β钳位相互作用的能力,并用作转沉透聚合酶,但不需要其“小指”结构域,与β钳位的次级相互作用。 DNA聚合酶IV的旁路牺牲了额外的股份跳跃活性,表明它们正在竞争反应。

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