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Enhancement of Polymerase Activity of the Large Fragment in DNA Polymerase I from Geobacillus stearothermophilus by Site-Directed Mutagenesis at the Active Site

机译:通过在活性位点在地麦草霉菌诱变中,从Geobacillus seerearotherulus从Geobacillus stearothermophilus中加强大片段的聚合酶活性

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摘要

The large fragment of DNA polymerase I from Geobacillus stearothermophilus GIM1.543 (Bst DNA polymerase) with 5'-3' DNA polymerase activity while in absence of 5'-3' exonuclease activity possesses high thermal stability and polymerase activity. Bst DNA polymerase was employed in isothermal multiple self-matching initiated amplification (IMSA) which amplified the interest sequence with high selectivity and was widely applied in the rapid detection of human epidemic diseases. However, the detailed information of commercial Bst DNA polymerase is unpublished and well protected by patents, which makes the high price of commercial kits. In this study, wild-type Bst DNA polymerase (WT) and substitution mutations for improving the efficiency of DNA polymerization were expressed and purified in E. coli. Site-directed substitutions of four conserved residues (Gly~310, Arg~412, Lys~416, and Asp~540) in the activity site of Bst DNA polymerase influenced efficiency of polymerizing dNTPs. The substitution of residue Gly~310 by alanine or leucine and residue Asp~540 by glutamic acid increased the efficiency of polymerase activity. All mutants with higher polymerizing efficiency were employed to complete the rapid detection of EV71-associated hand, foot, and mouth disease (HFMD) by IMSA approach with relatively shorter period which is suitable for the primary diagnostics setting in rural and underdeveloped areas.
机译:在不存在5'-3'外切核酸酶活性的情况下,来自Geobacillus Stearhothermophilus Gim1.543(BST DNA聚合酶)的DNA聚合酶I的大小段具有5'-3'DNA聚合酶活性。 BST DNA聚合酶用于等温多匹配引发的扩增(IMSA),其扩增具有高选择性的利息序列,并且广泛应用于人类流行病的快速检测。然而,商业BST DNA聚合酶的详细信息未发布并受专利保护,这使得商业套件的高价。在该研究中,在大肠杆菌中表达并纯化了用于提高DNA聚合效率的野生型BST DNA聚合酶(WT)和取代突变。 BST DNA聚合酶活性位点的四个保守残基(Gly〜310,Arg〜412,Lys〜416和ASP〜540)的靶向替代物在聚合DNTPS的效率的效率中。通过谷氨酸替代丙氨酸或亮氨酸和残留物ASP〜540的残余物〜310的取代增加了聚合酶活性的效率。通过IMSA方法采用具有较高聚合效率的突变体以通过相对较短的时间来完成EV71-相关手,脚和口病(HFMD)的快速检测,这适用于农村和欠发达地区的主要诊断环境。

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