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A nucleotide binding rectification Brownian ratchet model for translocation of Y-family DNA polymerases

机译:Y家族DNA聚合酶易位的核苷酸结合校正布朗棘轮模型

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摘要

Y-family DNA polymerases are characterized by low-fidelity synthesis on undamaged DNA and ability to catalyze translesion synthesis over the damaged DNA. Their translocation along the DNA template is an important event during processive DNA synthesis. In this work we present a Brownian ratchet model for this translocation, where the directed translocation is rectified by the nucleotide binding to the polymerase. Using the model, different features of the available structures for Dpo4, Dbh and polymerase ι in binary and ternary forms can be easily explained. Other dynamic properties of the Y-family polymerases such as the fast translocation event upon dNTP binding for Dpo4 and the considerable variations of the processivity among the polymerases can also be well explained by using the model. In addition, some predicted results of the DNA synthesis rate versus the external force acting on Dpo4 and Dbh polymerases are presented. Moreover, we compare the effect of the external force on the DNA synthesis rate of the Y-family polymerase with that of the replicative DNA polymerase.
机译:Y-家族DNA聚合酶的特征是在未损坏的DNA上进行低保真合成,并能够在受损的DNA上催化跨病变合成。它们沿DNA模板的易位是过程性DNA合成过程中的重要事件。在这项工作中,我们提出了这种易位的布朗棘轮模型,其中定向易位通过与聚合酶结合的核苷酸来纠正。使用该模型,可以容易地解释二元和三元形式的Dpo4,Dbh和聚合酶1的可用结构的不同特征。 Y族聚合酶的其他动力学特性,例如dNTP与Dpo4结合时的快速转运事件以及聚合酶之间的合成能力的显着变化,也可以通过使用该模型进行解释。此外,还介绍了DNA合成速率与作用于Dpo4和Dbh聚合酶的外力的预测结果。此外,我们比较了外力对Y家族聚合酶与复制型DNA聚合酶的DNA合成速率的影响。

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