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The dynamic processivity of the T4 DNA polymerase during replication

机译:T4 DNA聚合酶在复制过程中的动态过程

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The polymerase (gp43) processivity during T4 replisome mediated DNA replication has been investigated. The size of the Okazaki fragments remains constant over a wide range of polymerase concentrations. A dissociation rate constant of approximate to0.0013 sec(-1) was measured for the polymerases from both strands, consistent with highly processive replication on both the leading and lagging strands. This processive replication, however, can be disrupted by a catalytically inactive mutant D408N gp43 that retains normal affinity for DNA and the clamp. The inhibition kinetics fit well to an active exchange model in which the mutant polymerase (the polymerase trap) displaces the replicating polymerase. This kinetic model was further strengthened by the observation that the sizes of both the Okazaki fragments and the extension products on a primed M13mp18 template were reduced in the presence of the mutant polymerase. The effects of the trap polymerase therefore suggest a dynamic processivity of the polymerase during replication, namely, a solution/replisome polymerase exchange takes place without affecting continued DNA synthesis. This process mimics the polymerase switching recently suggested during the translesion DNA synthesis, implies the multiple functions of the clamp in replication, and may play a potential role in overcoming the replication barriers by the T4 replisome.
机译:已经研究了T4复制体介导的DNA复制过程中的聚合酶(gp43)合成能力。冈崎片段的大小在多种聚合酶浓度范围内保持恒定。对两条链的聚合酶测得的解离速率常数约为0.0013 sec(-1),与在前导链和滞后链上的高过程复制一致。但是,这种持续复制可以被催化失活的突变体D408N gp43破坏,该突变体对DNA和钳位保持正常亲和力。抑制动力学非常适合于活性交换模型,在该模型中,突变型聚合酶(聚合酶陷阱)取代了复制型聚合酶。通过观察突变的聚合酶的存在,冈崎片段和引物M13mp18模板上的延伸产物的大小均减小,从而进一步增强了该动力学模型。因此,陷阱聚合酶的作用表明聚合酶在复制过程中具有动态的合成能力,即发生溶液/复制体聚合酶交换而不会影响DNA的持续合成。该过程模拟了最近在跨病变DNA合成过程中建议的聚合酶转换,暗示了复制中钳位的多种功能,并且可能在克服T4复制体的复制障碍中发挥潜在作用。

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