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Optimizing T4 DNA polymerase conditions enhances the efficiency of one-step sequence- and ligation-independent cloning

机译:优化T4 DNA聚合酶条件提高了一步序列和无关的克隆的效率

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Previously, we developed a one-step sequence- and ligation-independent cloning (SLIC) method that is simple, fast, and cost-effective. However, although one-step SLIC generally works well, its cloning efficiency is occasionally poor, potentially due to formation of stable secondary structures within the single-stranded DNA (ssDNA) region generated by T4 DNA polymerase during the 2.5 min treatment at room temperature. To overcome this problem, we developed a modified thermo-regulated one-step SLIC approach by testing shorter T4 DNA polymerase treatment durations (5 s-2.5 min) over a wide range of temperatures (25-75掳C). The highest cloning efficiency resulted when inserts with homology lengths 20 bases were treated with T4 DNA polymerase for 30 s at 50掳C. This briefer T4 polymerase treatment at a higher temperature helps increase cloning efficiency for inserts with strong secondary structures at their ends, increasing the utility of one-step SLIC for the cloning of short fragments.
机译:以前,我们开发了一种简单,快速,经济效益的一步序列和连接无关的克隆(SLIC)方法。然而,尽管一步的切口通常很好,但其克隆效率偶尔差,可能是由于在室温下的2.5分钟处理期间在T4 DNA聚合酶中形成的单链DNA(SSDNA)区域内的稳定二次结构。为了克服这个问题,我们通过在各种温度(25-75℃)上测试更短的T4 DNA聚合酶处理持续时间(5 s-2.5 min),开发了一种改进的热调节一步切片方法。当具有同源长度的插入时,用T4 DNA聚合酶在50℃下用T4 DNA聚合酶处理最高的克隆效率。该较高温度的这种细胞T4聚合酶处理有助于提高克隆效率,以增加其端部的强次结构的插入件,增加了一步切片的纯化用于短片段的克隆。

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