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真核生物DNA聚合酶在体外的移码诱变

Frameshift mutagenesis by eucaryotic DNA polymerases in vitro.

作者信息

Kunkel T A

出版信息

J Biol Chem. 1986 Oct 15;261(29):13581-7.

PMID:3759982
Abstract

The frequency and specificity of frameshift errors produced during a single round of in vitro DNA synthesis by DNA polymerases-alpha, -beta, and -gamma (pol-alpha, -beta, and -gamma, respectively) have been determined. DNA polymerase-beta is the least accurate enzyme, producing frameshift errors at an average frequency of one error for each 1,000-3,000 nucleotides polymerized, a frequency similar to its average base substitution accuracy. DNA polymerase-alpha is approximately 10-fold more accurate, producing frameshifts at an average frequency of one error for every 10,000-30,000 nucleotides polymerized, a frequency which is about 2- to 6-fold lower than the average pol-alpha base substitution accuracy. DNA polymerase-gamma is highly accurate, producing on the average less than one frameshift error for every 200,000-400,000 nucleotides polymerized. This represents a more than 10-fold higher fidelity than for base substitutions. Among the collection of sequenced frameshifts produced by DNA polymerases-alpha and beta, both common features and distinct specificities are apparent. These specificities suggest a major role for eucaryotic DNA polymerases in modulating frameshift fidelity. Possible mechanisms for production of frameshifts are discussed in relation to the observed biases. One of these models has been experimentally supported using site-directed mutagenesis to change the primary DNA sequence of the template. Alteration of a pol-beta frameshift hotspot sequence TTTT to CTCT reduced the frequency of pol-beta-dependent minus-one-base errors at this site by more than 30-fold, suggesting that more than 97% of the errors at the TTTT run involve a slippage mechanism.

摘要

已测定了DNA聚合酶α、β和γ(分别为pol-α、-β和-γ)在一轮体外DNA合成过程中产生的移码错误的频率和特异性。DNA聚合酶β是最不准确的酶,每聚合1000 - 3000个核苷酸平均产生一个移码错误,该频率与其平均碱基替换准确性相似。DNA聚合酶α的准确性约高10倍,每聚合10000 - 30000个核苷酸平均产生一个移码错误,该频率比pol-α的平均碱基替换准确性低约2至6倍。DNA聚合酶γ非常准确,每聚合200000 - 400000个核苷酸平均产生少于一个移码错误。这代表了比碱基替换高10倍以上的保真度。在DNA聚合酶α和β产生的已测序移码中,共同特征和明显的特异性都很明显。这些特异性表明真核DNA聚合酶在调节移码保真度方面起主要作用。结合观察到的偏差讨论了产生移码的可能机制。其中一个模型已通过定点诱变改变模板的一级DNA序列得到实验支持。将pol-β移码热点序列TTTT改变为CTCT,使该位点依赖pol-β的减一碱基错误频率降低了30倍以上,表明在TTTT序列处超过97%的错误涉及滑动机制。

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