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Chimeric Phi29 DNA polymerase with helix–hairpin–helix motifs shows enhanced salt tolerance and replication performance

机译:具有螺旋发夹 - 螺旋基序的嵌合型PHI29 DNA聚合酶显示出增强的耐盐性和复制性能

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摘要

Phi29 DNA polymerase (Phi29 Pol) has been successfully applied in DNA nanoball‐based sequencing, real‐time DNA sequencing from single polymerase molecules and nanopore sequencing employing the sequencing by synthesis (SBS) method. Among these, polymerase‐assisted nanopore sequencing technology analyses nucleotide sequences as a function of changes in electrical current. This ionic, current‐based sequencing technology requires polymerases to perform replication at high salt concentrations, for example 0.3 M KCl. Nonetheless, the salt tolerance of wild‐type Phi29 Pol is relatively low. Here, we fused helix–hairpin–helix (HhH)2 domains E‐L (eight repeats in total) of topoisomerase V (Topo V) from the hyperthermophile Methanopyrus kandleri to the Phi29 Pol COOH terminus, designated Phi29EL DNA polymerase (Phi29EL Pol). Domain fusion increased the overall enzyme replication efficiency by fourfold. Phi29EL Pol catalysed rolling circle replication in a broader range of salt concentrations than did Phi29 Pol, extending the KCl concentration range for activity up to 0.3 M. In addition, the mutation of Glu375 to Ser or Gln increased Phi29EL Pol activity in the presence of KCl. In this work, we produced a salt‐tolerant Phi29 Pol derivative by means of (HhH)2 domain insertion. The multiple advantages of this insertion make it a good substitute for Phi29 Pol, especially for use in nanopore sequencing or other circumstances that require high salt concentrations.
机译:的phi29 DNA聚合酶(的phi29 POL)已基于DNA纳米球测序,实时DNA从单个聚合酶分子和纳米孔测序采用由合成(SBS)方法测序测序得到成功应用。其中,作为电流变化的函数分析核苷酸序列中的聚合酶辅助纳米孔序列。该离子的基于电流的测序技术需要聚合酶以在高盐浓度下进行复制,例如0.3μkcl。尽管如此,野生型PHI29 POL的耐盐性相对较低。在此,我们将螺旋发夹 - 螺旋(HHH)2个域2个区域E-L(总共八次重复)从高热甲醇甲烷甲醇酮酮到PHI29 POL COOH末端,指定为PHI29EL DNA聚合酶(PHI29EL POL) 。域融合通过四倍提高整体酶复制效率。 PHI29EL POL催化在更广泛的盐浓度范围内的轧制圆圈复制多于PHI29 POL,延伸kCl浓度范围的活性至0.3米。此外,GLU375突变在KCl存在下增加了PHI29EL POL活性。在这项工作中,我们通过(HHH)2结构域插入制备了耐盐性Phi29 Pol衍生物。这种插入的多种优点使其成为Phi29 Pol的良好替代品,特别是用于纳米孔测序或需要高盐浓度的其他情况。

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