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DNA polymerase beta: effects of gapped DNA substrates on dNTP specificity fidelity processivity and conformational changes.

机译:DNA聚合酶beta:缺口的DNA底物对dNTP特异性保真度持续性和构象变化的影响。

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摘要

Pre-steady-state kinetic analysis was used to compare the catalytic properties of DNA polymerase beta (Pol beta) for single-base gap-filling and regular duplex DNA synthesis. The rate of polymerization (kpol) and the apparent equilibrium dissociation constant of dNTP (Kd) were determined with single-nucleotide gapped DNA substrates for all four possible correct base pairs and twelve possible incorrect base pairs, and the results were compared with those obtained previously with non-gapped primer/template duplex DNA substrates. For correct dNTP incorporation, the use of single-nucleotide gapped DNA led to significant decreases in the Kd of dNTP. Although kpol was little affected, the catalytic efficiency kpol/Kd increased significantly owing to the decreases in Kd. In contrast, for incorrect dNTP incorporation, the use of single-nucleotide gapped DNA substrates did not affect the Kd of dNTP appreciably but caused the kpol (and thus kpol/Kd) for incorrect dNTP incorporation to increase. As a consequence the fidelity of Pol beta was not significantly affected by the use of single-nucleotide gapped DNA substrates. In addition we show that under processive polymerization conditions the processivity of Pol beta increases in the gap-filling synthesis owing to a decreased rate of DNA dissociation. Finally, with a single-nucleotide gapped DNA substrate the rate-limiting conformational change step before chemistry was also observed. However, the preceding fast conformational change observed with duplex DNA substrates was not clearly detected. A possible cause is that in the complex with the gapped DNA, the 8 kDa N-terminal domain of Pol beta already exists in a closed conformation. This interpretation was supported by tryptic digestion experiments.
机译:稳态动力学分析用于比较DNA聚合酶beta(Pol beta)对单碱基缺口填充和常规双链DNA合成的催化性能。用单核苷酸缺口DNA底物测定了所有四个可能的正确碱基对和十二个可能的错误碱基对的聚合速率(kpol)和dNTP的表观平衡解离常数(Kd),并将结果与​​先前获得的结果进行了比较具有无缺口的引物/模板双链DNA底物。对于正确的dNTP掺入,使用单核苷酸缺口DNA会导致dNTP的Kd显着降低。尽管kpol几乎没有受到影响,但是由于Kd的降低,催化效率kpol / Kd显着增加。相反,对于不正确的dNTP掺入,单核苷酸缺口DNA底物的使用不会明显影响dNTP的Kd,但会导致不正确的dNTP掺入的kpol(以及kpol / Kd)增加。结果,使用单核苷酸缺口的DNA底物不会显着影响Polβ的保真度。另外,我们表明,在进行性聚合条件下,由于DNA解离速率降低,Polβ的处理能力在缺口填充合成中增加。最后,用单核苷酸缺口的DNA底物,还观察到化学反应之前的限速构象变化步骤。但是,没有明确检测到先前在双链DNA底物上观察到的快速构象变化。可能的原因是在与空缺的DNA形成的复合物中,Pol beta的8 kDa N末端结构域已经存在于封闭的构象中。这种解释得到了胰蛋白酶消化实验的支持。

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