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DNA聚合酶α复制天然DNA的准确性。

Accuracy of DNA polymerase-alpha in copying natural DNA.

作者信息

Grosse F, Krauss G, Knill-Jones J W, Fersht A R

机构信息

Zentrum Biochemie, Abt. Biophysikalische Chemie, Medizinische Hochschule Hannover, FRG.

出版信息

EMBO J. 1983;2(9):1515-9. doi: 10.1002/j.1460-2075.1983.tb01616.x.

Abstract

The fidelity of DNA polymerase-alpha from calf thymus (9S enzyme) in copying bacteriophage phi174am16 DNA in vitro has been determined from the frequency of production of different revertants. In the self-priming reaction we were able to measure the frequencies of base pairing mismatches during the course of replication on biasing the ratios of deoxynucleoside triphosphates. The frequency of dGTP:T, dGTP:G and dATP:G mismatches were 7.6 x 10(-5), 4.4 x 10(-5) and 2.8 x 10(-5), respectively, at equal concentrations of the deoxynucleoside triphosphates. dCTP:A, dGTP:A, dCTP:T and dTTP:T mismatches were below the limit of detection (<5 x 10(-6)). A synthetic dodecamer primer with a 3' end covering the first two bases of the amber codon was used to determine the misinsertion frequency of the first nucleotide incorporated. This gave a misinsertion frequency of 1.5 x 10(-4) for the dGTP:T mismatch, which is slightly higher than that observed from the pool bias studies. Further, it showed no sensitivity to biasing the nucleotide pool, suggesting a different mechanism for the incorporation of the first nucleotide. These data do not support 'energy-relay'-like models for achieving high accuracy in eukaryotes. The observed misinsertion frequencies were corrected for mismatch repair of the heteroduplexes during the transfection experiments by parallel experiments using a mismatched primer. This was synthesized to have the same G:T mismatch as produced in the preceding experiment.

摘要

通过不同回复突变体的产生频率,已测定了来自小牛胸腺的DNA聚合酶α(9S酶)在体外复制噬菌体φ174am16 DNA时的保真度。在自引发反应中,我们能够通过调节脱氧核苷三磷酸的比例来测量复制过程中碱基配对错配的频率。在脱氧核苷三磷酸浓度相等时,dGTP:T、dGTP:G和dATP:G错配的频率分别为7.6×10⁻⁵、4.4×10⁻⁵和2.8×10⁻⁵。dCTP:A、dGTP:A、dCTP:T和dTTP:T错配低于检测限(<5×10⁻⁶)。使用一个3'端覆盖琥珀密码子前两个碱基的合成十二聚体引物来确定掺入的第一个核苷酸的错插入频率。对于dGTP:T错配,其错插入频率为1.5×10⁻⁴,略高于从核苷酸库偏差研究中观察到的频率。此外,它对核苷酸库的偏差不敏感,这表明第一个核苷酸掺入的机制不同。这些数据不支持真核生物中实现高精度的“能量中继”样模型。在转染实验过程中,通过使用错配引物的平行实验对异源双链体的错配修复进行校正,从而对观察到的错插入频率进行校正。合成的该引物具有与前一实验中产生的相同的G:T错配。

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