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首页> 外文期刊>DNA repair >A nuclear 3'-5' exonuclease proofreads for the exonuclease-deficient DNA polymerase alpha.
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A nuclear 3'-5' exonuclease proofreads for the exonuclease-deficient DNA polymerase alpha.

机译:核外切酶缺陷型DNA聚合酶α的核3'-5'外切酶校对。

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摘要

DNA replication is a highly accurate process designed to duplicate the entire genome of a cell during each cell division. The accuracy of DNA replication is derived from the balance between three important components: base selectivity by the replicative DNA polymerases (pols), exonucleolytic proofreading, and post-replicative mismatch repair. Previously we identified a human 3'-5' exonuclease (exoN) whose properties suggested it may function as a proofreader for the exonuclease-deficient replicative DNA pol alpha. Purified exoN has no associated pol activity and catalyzes removal of mispaired nucleotides from DNA duplexes. Consistent with previous reports, it was found that mammalian pol alpha is inefficient at extending from mispaired DNA terminals. However, in similar reactions that included exoN, there was a 4.4-15.7-fold increase in pol alpha-catalyzed elongation from mispaired base pairs. In contrast, exoN did not have a dramatic impact on the ability of exonuclease-deficient variants of Klenow (K-) and T7 polymerase to catalyze extension from mispaired DNA. Continuous DNA replication catalyzed by either pol alpha or K- generated base substitutions at a frequency of 24.3x10(-4) and 38x10(-4), respectively. ExoN restored error-free DNA replication in reactions with pol alpha whereas it did not significantly improve the accuracy of K-. These results are consistent with a functional interaction between exoN and pol alpha to ensure accurate DNA replication.
机译:DNA复制是一种高度精确的过程,旨在在每次细胞分裂过程中复制细胞的整个基因组。 DNA复制的准确性源自三个重要组成部分之间的平衡:复制性DNA聚合酶(pols)的碱基选择性,核外核酸校对和复制后错配修复。先前,我们鉴定了人类3'-5'核酸外切酶(exoN),其性质表明它可能充当核酸外切酶缺陷型复制DNA pol alpha的校对工具。纯化的exoN没有相关的pol活性,并催化从DNA双链体中去除错配的核苷酸。与以前的报道一致,发现哺乳动物的polα不能有效地从错配的DNA末端延伸。但是,在包括exoN的类似反应中,错配碱基对的polα催化延伸增加了4.4-15.7倍。相反,exoN对Klenow(K-)和T7聚合酶的核酸外切酶缺陷型变异体催化错配DNA延伸的能力没有显着影响。通过pol alpha或K-催化的连续DNA复制分别以24.3x10(-4)和38x10(-4)的频率产生碱基取代。 ExoN在与pol alpha的反应中恢复了无错误的DNA复制,但是并没有显着提高K-的准确性。这些结果与exoN和pol alpha之间的功能相互作用相一致,以确保准确的DNA复制。

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