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Discrete Interactions Between Bacteriophage T7 Primase-Helicase and DNA Polymerase Drive the Formation of a Priming Complex Containing Two Copies of DNA Polymerase

机译:噬菌体T7引发酶-解旋酶和DNA聚合酶之间的离散相互作用驱动包含两个DNA聚合酶拷贝的引发复合物的形成

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摘要

Replisomes are multi-protein complexes that coordinate the synthesis of leading and lagging DNA strands to increase replication efficiency and reduce DNA strand breaks caused by stalling of replication forks. The bacteriophage T7 replisome is an economical machine that requires only four proteins for processive, coupled synthesis of two DNA strands. Here we characterize a complex between T7 primase-helicase and DNA polymerase on DNA that was trapped during the initiation of Okazaki fragment synthesis from an RNA primer. This priming complex consists of two DNA polymerases and a primase-helicase hexamer that assemble on the DNA template in an RNA-dependent manner. The zinc binding domain of the primase-helicase is essential for trapping the RNA primer in complex with the polymerase, and a unique loop located on the thumb of the polymerase also stabilizes this primer extension complex. Whereas one of the polymerases engages the primase-helicase and RNA primer on the lagging strand of a model replication fork, the second polymerase in the complex is also functional and can bind a primed template DNA. These results indicate that the T7 primase-helicase specifically engages two copies of DNA polymerase, which would enable the coordination of leading and lagging strand synthesis at a replication fork. Assembly of the T7 replisome is driven by intimate interactions between the DNA polymerase and multiple subunits of the primase-helicase hexamer.
机译:复制体是多蛋白质复合物,可协调前导DNA链和滞后DNA链的合成,从而提高复制效率并减少复制叉停滞引起的DNA链断裂。 T7噬菌体是一种经济的机器,仅需要四种蛋白质即可进行过程性偶联合成两条DNA链。在这里,我们表征了T7引发酶-解旋酶与DNA聚合酶之间的复合物,该复合物是在冈崎片段从RNA引物开始合成的过程中被捕获的。该启动复合物由两个DNA聚合酶和一个以RNA依赖性方式组装在DNA模板上的启动酶-解旋酶六聚体组成。引物酶-解旋酶的锌结合域对于将RNA引物与聚合酶复合捕获至关重要,并且位于聚合酶拇指上的独特环也可以稳定该引物延伸复合体。尽管其中一种聚合酶与模型复制叉的滞后链上的primase-helasease和RNA引物结合,但复合物中的第二种聚合酶也是有功能的,可以结合有底漆的模板DNA。这些结果表明,T7 primase-helicase特异性地与DNA聚合酶的两个拷贝结合,这将使复制叉处的前导链和后链合成得以协调。 T7复制体的组装是由DNA聚合酶与引发酶-解旋酶六聚体的多个亚基之间的紧密相互作用驱动的。

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