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Insights into strand displacement and processivity from the crystal structure of the protein-primed DNA polymerase of bacteriophage phi 29

机译:从噬菌体phi 29的蛋白质引发的DNA聚合酶的晶体结构了解链置换和加工性

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摘要

The DNA polymerase from phage Phi29 is a B family polymerase that initiates replication using a protein as a primer, attaching the first nucleotide of the phage genome to the hydroxyl of a specific serine of the priming protein. The crystal structure of Phi29 DNA polymerase determined at 2.2 Angstrom resolution provides explanations for its extraordinary processivity and strand displacement activities. Homology modeling suggests that downstream template DNA passes through a tunnel prior to entering the polymerase active site. This tunnel is too small to accommodate double-stranded DNA and requires the separation of template and non-template strands. Members of the B family of DNA polymerases that use protein primers contain two sequence insertions: one forms a domain not previously observed in polymerases, while the second resembles the specificity loop of T7 RNA polymerase. The high processivity of Phi29 DNA polymerase may be explained by its topological encirclement of both the downstream template and the upstream duplex DNA.
机译:来自噬菌体Phi29的DNA聚合酶是一种B族聚合酶,可使用一种蛋白质作为引物来启动复制,将噬菌体基因组的第一个核苷酸连接至该启动蛋白特定丝氨酸的羟基上。在2.2埃分辨率下测定的Phi29 DNA聚合酶的晶体结构为其非凡的合成能力和链置换活性提供了解释。同源性建模表明,下游模板DNA在进入聚合酶活性位点之前先通过隧道。该通道太小,无法容纳双链DNA,因此需要分离模板链和非模板链。使用蛋白质引物的DNA聚合酶B族成员包含两个序列插入:一个形成以前未在聚合酶中观察到的结构域,而第二个则类似于T7 RNA聚合酶的特异性环。 Phi29 DNA聚合酶的高生产力可能是由于其下游模板和上游双链DNA的拓扑包围。

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