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A useful strategy to construct DNA polymerases with different properties by using genetic resources from environmental DNA

机译:利用环境DNA的遗传资源构建具有不同特性的DNA聚合酶的有用策略

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References(21) Cited-By(4) DNA polymerases synthesize new DNA strands according to the template DNA, using deoxynucleotide triphosphates during DNA replication and repair, and are essential to maintain genome integrity in DNA metabolism. In addition, these enzymes are widely used for genetic engineering techniques, including dideoxy-sequencing, PCR, DNA labeling, mutagenesis, and other in vitro experiments. Thermostable DNA polymerases are especially useful for PCR and cycle-sequencing. We propose a powerful strategy using environmental DNA as a genetic resource to investigate the structure-function relationships of the family B DNA polymerases. The region corresponding to the active center of the DNA polymerizing reaction in the structural gene of P. furiosus DNA polymerase I (PolBI) was substituted by PCR fragments amplified from DNAs within soil samples from various locations in Japan. The chimeric pol genes were constructed within the PolBI expression plasmid. The chimeric enzymes thus produced revealed DNA polymerase activities with different properties.
机译:参考文献(21)被引用的By(4)DNA聚合酶在DNA复制和修复过程中使用脱氧核苷酸三磷酸根据模板DNA合成新的DNA链,对于维持DNA代谢中的基因组完整性至关重要。此外,这些酶还广泛用于基因工程技术,包括双脱氧测序,PCR,DNA标记,诱变和其他体外实验。热稳定的DNA聚合酶特别适用于PCR和循环测序。我们提出了使用环境DNA作为遗传资源来研究B族DNA聚合酶的结构-功能关系的有效策略。从日本不同地区的土壤样品中的DNA扩增得到的PCR片段取代了P. furiosus DNA聚合酶I(PolBI)结构基因中与DNA聚合反应活性中心相对应的区域。嵌合pol基因在PolBI表达质粒内构建。由此产生的嵌合酶显示具有不同性质的DNA聚合酶活性。

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