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Enzymatic synthesis of DNA on glycerol nucleic acid templates without stable duplex formation between product and template

机译:在甘油核酸模板上酶促合成DNA,产物与模板之间没有稳定的双链体形成

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摘要

Glycerol nucleic acid (GNA) is an interesting alternative base-pairing system based on an acyclic, glycerol-phosphate backbone repeat unit. The question of whether DNA polymerases can catalyze efficient template-dependent synthesis using GNA as the template is of particular interest because GNA is unable to form a stable duplex with DNA. In the present study, we screened a variety of DNA polymerases for GNA-dependent DNA synthesis. We find that Bst DNA polymerase can catalyze full-length DNA synthesis on a dodecamer GNA template. The efficiency of DNA synthesis is increased by replacing adenine with diaminopurine in both the GNA template and the DNA monomers and by the presence of manganese ions. We suggest that the BstDNA polymerase maintains a short, transient region of base-pairing between the DNA product strand and the GNA template, but that stable duplex formation between product and template strands is not required for template-dependent polymerization.
机译:甘油核酸(GNA)是基于无环甘油磷酸主链重复单元的有趣的碱基配对系统。由于GNA无法与DNA形成稳定的双链体,因此DNA聚合酶是否可以使用GNA作为模板来催化有效的模板依赖性合成这一问题引起了特别的关注。在本研究中,我们筛选了多种GNA依赖性DNA合成的DNA聚合酶。我们发现Bst DNA聚合酶可以在dodecamer GNA模板上催化全长DNA合成。通过在GNA模板和DNA单体中都用二氨基嘌呤替代腺嘌呤并存在锰离子,可以提高DNA合成的效率。我们建议BstDNA聚合酶在DNA产物链和GNA模板之间保持一个短而短暂的碱基配对区域,但是模板依赖性聚合不需要在产物和模板链之间形成稳定的双链体。

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