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Optimal conditions to use Pfu exo– DNA polymerase for highly efficient ligation-mediated polymerase chain reaction protocols

机译:使用Pfu exo– DNA的最佳条件 用于高效连接介导的聚合酶链反应的聚合酶 协议

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摘要

Ligation-Mediated Polymerase Chain Reaction (LMPCR) is the most sensitive sequencing technique available to map single-stranded DNA breaks at the nucleotide level of resolution using genomic DNA. LMPCR has been adapted to map DNA damage and reveal DNA–protein interactions inside living cells. However, the sequence context (GC content), the global break frequency and the current combination of DNA polymerases used in LMPCR affect the quality of the results. In this study, we developed and optimized an LMPCR protocol adapted for Pyrococcus furiosus exo DNA polymerase (Pfu exo). The relative efficiency of Pfu exo was compared to T7-modified DNA polymerase (Sequenase 2.0) at the primer extension step and to Thermus aquaticus DNA polymerase (Taq) at the PCR amplification step of LMPCR. At all break frequencies tested, Pfu exo proved to be more efficient than Sequenase 2.0. During both primer extension and PCR amplification steps, the ratio of DNA molecules per unit of DNA polymerase was the main determinant of the efficiency of Pfu exo, while the efficiency of Taq was less affected by this ratio. Substitution of NaCl for KCl in the PCR reaction buffer of Taq strikingly improved the efficiency of the DNA polymerase. Pfu exo was clearly more efficient than Taq to specifically amplify extremely GC-rich genomic DNA sequences. Our results show that a combination of Pfu exo at the primer extension step and Taq at the PCR amplification step is ideal for in vivo DNA analysis and DNA damage mapping using LMPCR.
机译:连接介导的聚合酶链反应(LMPCR)是最灵敏的测序技术,可用于使用基因组DNA在核苷酸分辨率级别绘制单链DNA断裂图。 LMPCR已被用来绘制DNA损伤图谱并揭示活细胞内部的DNA-蛋白质相互作用。但是,LMPCR中使用的序列上下文(GC含量),整体断裂频率和DNA聚合酶的当前组合会影响结果的质量。在这项研究中,我们开发并优化了适用于激烈热球菌exo DNA聚合酶(Pfu exo )的LMPCR方案。将Pfu exo 的相对效率在引物延伸步骤与T7修饰的DNA聚合酶(Sequenase 2.0)以及在LMPCR的PCR扩增步骤中与水生栖热菌DNA聚合酶(Taq)进行了比较。在所有测试的中断频率下,Pfu exo 被证明比Sequenase 2.0更有效。在引物延伸和PCR扩增步骤中,每单位DNA分子的比例 DNA聚合酶的效率是Pfu exo 效率的主要决定因素,而效率 Taq的百分比受此比率的影响较小。代换 Taq PCR反应缓冲液中NaCl对KCl的显着改善 DNA聚合酶的效率。 Pfu exo 原为 显然比Taq更有效 扩增极其富含GC的基因组DNA序列。我们的结果表明 Pfu exo 的组合 引物延伸步骤和Taq在PCR扩增时 步骤非常适合体内DNA分析和DNA 使用LMPCR进行损伤定位。

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