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首页> 外文期刊>Nucleic acids research >In vitro replication of bacteriophage PRD1 DNA. Metal activation of protein-primed initiation and DNA elongation
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In vitro replication of bacteriophage PRD1 DNA. Metal activation of protein-primed initiation and DNA elongation

机译:噬菌体PRD1 DNA的体外复制。金属激活的蛋白质引发的起始和DNA延伸

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摘要

Bacteriophage PRD1 replicates its DNA by means of a protein-primed replication mechanism. Compared to Mg2+, the use of Mn2+ as the metal activator of the phage DNA polymerase results In a great stimulation of the initiation reaction. The molecular basis of the observed stimulatory effect is an Increase in the velocity of the reaction. The phage DNA polymerase Is also able to catalyze the formation of the initiation complex in the absence of DNA template. Although the presence of Mn2+ does not affect either the polymerization activity or the processlvity of the DNA polymerase, this metal is unable to activate the overall replication of the phage genome. This can be explained by a deletorious effect of Mn2+ on the 3'-5'-exonucleolytic andor the strand-displacement activity, the latter /being an intrinsic function of the viral DNA polymerase required for protein-primed DNA replication.
机译:噬菌体PRD1通过蛋白质引发的复制机制复制其DNA。与Mg 2 + 相比,使用Mn 2 + 作为噬菌体DNA聚合酶的金属激活剂可极大地促进引发反应。观察到的刺激作用的分子基础是反应速度的增加。噬菌体DNA聚合酶在没有DNA模板的情况下也能够催化起始复合物的形成。尽管Mn 2 + 的存在不会影响DNA聚合酶的聚合活性或可加工性,但这种金属无法激活噬菌体基因组的整体复制。这可以通过Mn 2 + 对3'-5'-核酸外切和/或链置换活性的有害作用来解释,后者是蛋白质所需的病毒DNA聚合酶的固有功能引发的DNA复制。

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