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DNA聚合酶β:缺口DNA底物对脱氧核苷三磷酸特异性、保真度、持续合成能力及构象变化的影响

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

作者信息

Ahn J, Kraynov V S, Zhong X, Werneburg B G, Tsai M D

机构信息

Department of Chemistry, The Ohio State University, 100 West 18th Avenue, Columbus, OH 43210, USA.

出版信息

Biochem J. 1998 Apr 1;331 ( Pt 1)(Pt 1):79-87. doi: 10.1042/bj3310079.

Abstract

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.

摘要

采用稳态前动力学分析来比较DNA聚合酶β(Polβ)在单碱基缺口填补和常规双链DNA合成中的催化特性。使用单核苷酸缺口DNA底物,针对所有四种可能的正确碱基对和十二种可能的错误碱基对,测定了聚合速率(kpol)和dNTP的表观平衡解离常数(Kd),并将结果与先前使用无缺口引物/模板双链DNA底物获得的结果进行比较。对于正确的dNTP掺入,使用单核苷酸缺口DNA导致dNTP的Kd显著降低。尽管kpol受影响较小,但由于Kd的降低,催化效率kpol/Kd显著提高。相比之下,对于错误的dNTP掺入,使用单核苷酸缺口DNA底物对dNTP的Kd影响不大,但导致错误dNTP掺入的kpol(以及因此的kpol/Kd)增加。因此,单核苷酸缺口DNA底物的使用对Polβ的保真度没有显著影响。此外,我们表明,在连续聚合条件下,由于DNA解离速率降低,Polβ在缺口填补合成中的持续合成能力增加。最后,使用单核苷酸缺口DNA底物时,还观察到了化学反应之前的限速构象变化步骤。然而,未清楚检测到双链DNA底物之前观察到的快速构象变化。一个可能的原因是,在与缺口DNA的复合物中,Polβ的8 kDa N端结构域已经以封闭构象存在。胰蛋白酶消化实验支持了这一解释。

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