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Mutant Thermotoga neapolitana DNA polymerase I: altered catalytic properties for non-templated nucleotide addition and incorporation of correct nucleotides

机译:突变嗜热菌neapolitana DNA聚合酶I:非模板核苷酸添加和正确核苷酸掺入的催化特性改变

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Thermotoga neapolitana (Tne) DNA polymerase belongs to the DNA polymerase I (Pol I) family. The O-helix region of these polymerases is involved in dNTP binding and also plays a role in binding primer-template during DNA synthesis. Here we report that mutations in the O-helix region of Tne DNA polymerase (Arg722 to His, Tyr or Lys) almost completely abolished the enzyme's ability to catalyze the template-independent addition of a single base at the 3'-end of newly synthesized DNA in vitro. The mutations did not significantly affect the DNA polymerase catalytic activity and reduced base misinsertions 5- to 50-fold. The same Arg722 mutations dramatically increased the ability of the enzyme's 3' → 5' exonuclease to remove mispaired 3' bases in a primer extension assay. These mutant DNA polymerases can be used to accurately amplify target DNA in vitro for gene cloning and genotyping analysis.
机译:Thermotoga neapolitana(Tne)DNA聚合酶属于DNA聚合酶I(Pol I)家族。这些聚合酶的O-螺旋区参与dNTP的结合,并且在DNA合成过程中在结合引物-模板中也起作用。在这里我们报告说,Tne DNA聚合酶的O螺旋区(Arg722到His,Tyr或Lys)的突变几乎完全消除了该酶催化新合成的3'端不依赖模板的单个碱基添加的能力。体外DNA。突变不会显着影响DNA聚合酶的催化活性,并且碱基插入错误减少了5到50倍。在引物延伸测定中,相同的Arg722突变显着提高了酶的3'→5'核酸外切酶去除错配的3'碱基的能力。这些突变的DNA聚合酶可用于体外精确扩增靶DNA,以进行基因克隆和基因分型分析。

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