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Conformational dynamics of thermus aquaticus DNA polymerase i during catalysis

机译:水生栖热菌DNA聚合酶i催化过程中的构象动力学

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Despite the fact that DNA polymerases have been investigated for many years and are commonly used as tools in a number of molecular biology assays, many details of the kinetic mechanism they use to catalyze DNA synthesis remain unclear. Structural and kinetic studies have characterized a rapid, pre-catalytic open-to-close conformational change of the Finger domain during nucleotide binding for many DNA polymerases including Thermus aquaticus DNA polymerase I (Taq Pol), a thermostable enzyme commonly used for DNA amplification in PCR. However, little has been performed to characterize the motions of other structural domains of Taq Pol or any other DNA polymerase during catalysis. Here, we used stopped-flow F?rster resonance energy transfer to investigate the conformational dynamics of all five structural domains of the full-length Taq Pol relative to the DNA substrate during nucleotide binding and incorporation. Our study provides evidence for a rapid conformational change step induced by dNTP binding and a subsequent global conformational transition involving all domains of Taq Pol during catalysis. Additionally, our study shows that the rate of the global transition was greatly increased with the truncated form of Taq Pol lacking the N-terminal domain. Finally, we utilized a mutant of Taq Pol containing a de novo disulfide bond to demonstrate that limiting protein conformational flexibility greatly reduced the polymerization activity of Taq Pol.
机译:尽管已经对DNA聚合酶进行了多年研究并在许多分子生物学分析中普遍用作工具,但仍不清楚它们用于催化DNA合成的动力学机制的许多细节。结构和动力学研究表明,在许多DNA聚合酶(包括Thermus aquaticus DNA聚合酶I(Taq Pol))(一种常用于DNA扩增的热稳定酶)的核苷酸结合过程中,Finger域的快速,预催化的开-关构象变化。 PCR。但是,在催化过程中,几乎没有表现出Taq Pol的其他结构域或任何其他DNA聚合酶的运动。在这里,我们使用停止流Fster共振能量转移来研究全长Taq Pol的所有五个结构域相对于DNA底物在核苷酸结合和掺入过程中的构象动力学。我们的研究为由dNTP结合引起的快速构象变化步骤以及随后在催化过程中涉及Taq Pol的所有结构域的全局构象转变提供了证据。此外,我们的研究表明,由于Taq Pol的截短形式缺乏N末端结构域,全球过渡的速度大大提高了。最后,我们利用含有新二硫键的Taq Pol突变体来证明限制性蛋白质构象柔韧性大大降低了Taq Pol的聚合活性。

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