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Kinetic analysis of an efficient DNA-dependent TNA polymerase

机译:有效的DNA依赖性TNA聚合酶的动力学分析

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alpha-L-Threofuranosyl nucleoside triphosphates (tNTPs) are tetrafuranose nucleoside derivatives and potential progenitors of present-day beta-D-2'-deoxyribofuranosyl nucleoside triphosphates (dNTPs). Therminator DNA polymerase, a variant of the 9 degrees N DNA polymerase, is an efficient DNA-directed threosyl nucleic acid (TNA) polymerase. Here we report a detailed kinetic comparison of Therminator-catalyzed TNA and DNA syntheses. We examined the rate of sing le-nucleotide incorporation for all four tNTPs and dNTPs from a DNA primer-template complex and carried out parallel experiments with a chimeric DNA-TNA primer-DNA template containing five TNA residues at the primer X-terminus. Remarkably, no drop in the rate of TNA incorporation was observed in comparing the DNA-TNA primer to the all-DNA primer, suggesting that few primer-enzyme contacts are lost with a TNA primer. Moreover, comparison of the catalytic efficiency of TNA synthesis relative to DNA synthesis at the downstream positions reveals a difference of no greater than 5-fold in favor of the natural DNA substrate. This disparity becomes negligible when the TNA synthesis reaction mixture is supplemented with 1.25 mM MnCl2. These results indicate that Therminator DNA polymerase can recognize both a TNA primer and tNTP substrates and is an effective catalyst of TNA polymerization despite changes in the geometry of the reactants.
机译:α-L-苏呋喃糖基核苷三磷酸(tNTPs)是四呋喃糖核苷衍生物,是当今β-D-2'-脱氧核糖呋喃糖基核苷三磷酸(dNTPs)的潜在祖细胞。 Therminator DNA聚合酶是9度N DNA聚合酶的一种变体,是一种有效的DNA定向的苏糖基核酸(TNA)聚合酶。在这里,我们报告Therminator催化的TNA和DNA合成的详细动力学比较。我们检查了来自DNA引物-模板复合物的所有四个tNTP和dNTP的单核苷酸掺入率,并使用在引物X端含有五个TNA残基的嵌合DNA-TNA引物-DNA模板进行了平行实验。值得注意的是,在将DNA-TNA引物与全DNA引物进行比较时,未观察到TNA掺入速率的下降,这表明TNA引物几乎没有失去引物与酶的接触。此外,在下游位置比较TNA合成相对于DNA合成的催化效率,发现有利于天然DNA底物的差异不大于5倍。当在TNA合成反应混合物中添加1.25 mM MnCl2时,这种差异可以忽略不计。这些结果表明,Therminator DNA聚合酶可以识别TNA引物和tNTP底物,并且是TNA聚合的有效催化剂,尽管反应物的几何形状有所变化。

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