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DNA polymerase proofreading: active site switching catalyzed by the bacteriophage T4 DNA polymerase

机译:DNA聚合酶校对:噬菌体T4 DNA聚合酶催化的活性位点转换

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摘要

DNA polymerases achieve high-fidelity DNA replication in part by checking the accuracy of each nucleotide that is incorporated and, if a mistake is made, the incorrect nucleotide is removed before further primer extension takes place. In order to proofread, the primer-end must be separated from the template strand and transferred from the polymerase to the exonuclease active center where the excision reaction takes place; then the trimmed primer-end is returned to the polymerase active center. Thus, proofreading requires polymerase-to-exonuclease and exonuclease-to-polymerase active site switching. We have used a fluorescence assay that uses differences in the fluorescence intensity of 2-aminopurine (2AP) to measure the rates of active site switching for the bacteriophage T4 DNA polymerase. There are three findings: (i) the rate of return of the trimmed primer-end from the exonuclease to the polymerase active center is rapid, >500 s−1; (ii) T4 DNA polymerase can remove two incorrect nucleotides under single turnover conditions, which includes presumed exonuclease-to-polymerase and polymerase-to-exonuclease active site switching steps and (iii) proofreading reactions that initiate in the polymerase active center are not intrinsically processive.
机译:DNA聚合酶部分地通过检查所掺入的每个核苷酸的准确性来实现高保真DNA复制,如果犯了错误,则在进行进一步的引物延伸之前,应去除不正确的核苷酸。为了校对,必须将引物末端与模板链分开,并从聚合酶转移至发生切割反应的核酸外切酶活性中心。然后将修剪后的引物末端返回到聚合酶活性中心。因此,校对需要从聚合酶到核酸外切酶和核酸外切酶到聚合酶的活性位点转换。我们已经使用了一种荧光检测方法,该方法利用2-氨基嘌呤(2AP)荧光强度的差异来测量噬菌体T4 DNA聚合酶的活性位点转换率。有三个发现:(i)修剪后的引物末端从核酸外切酶到聚合酶活性中心的返回速率迅速,> 500 s-1; (ii)T4 DNA聚合酶可以在单个周转条件下去除两个不正确的核苷酸,包括推定的核酸外切酶至聚合酶和聚合酶至核酸外切酶活性位点转换步骤,以及(iii)在聚合酶活性中心启动的校对反应本质上不是进行性的

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