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酵母DNA聚合酶η在选择与嘧啶及胸腺嘧啶二聚体相对应插入的核苷酸时,存在沃森-克里克碱基配对而非霍格施泰因或摆动碱基配对的证据。

Evidence for Watson-Crick and not Hoogsteen or wobble base pairing in the selection of nucleotides for insertion opposite pyrimidines and a thymine dimer by yeast DNA pol eta.

作者信息

Hwang Hanshin, Taylor John-Stephen

机构信息

Department of Chemistry, Washington University, St. Louis, Missouri 63130, USA.

出版信息

Biochemistry. 2005 Mar 29;44(12):4850-60. doi: 10.1021/bi048244+.

Abstract

We have recently reported that pyrene nucleotide is preferentially inserted opposite an abasic site, the 3'-T of a thymine dimer, and most undamaged bases by yeast DNA polymerase eta (pol eta). Because pyrene is a nonpolar molecule with no H-bonding ability, the unusually high efficiencies of dPMP insertion are ascribed to its superior base stacking ability, and underscore the importance of base stacking in the selection of nucleotides by pol eta. To investigate the role of H-bonding and base pair geometry in the selection of nucleotides by pol eta, we determined the insertion efficiencies of the base-modified nucleotides 2,6-diaminopurine, 2-aminopurine, 6-chloropurine, and inosine which would make a different number of H-bonds with the template base depending on base pair geometry. Watson-Crick base pairing appears to play an important role in the selection of nucleotide analogues for insertion opposite C and T as evidenced by the decrease in the relative insertion efficiencies with a decrease in the number of Watson-Crick H-bonds and an increase in the number of donor-donor and acceptor-acceptor interactions. The selectivity of nucleotide insertion is greater opposite the 5'-T than the 3'-T of the thymine dimer, in accord with previous work suggesting that the 5'-T is held more rigidly than the 3'-T. Furthermore, insertion of A opposite both Ts of the dimer appears to be mediated by Watson-Crick base pairing and not by Hoogsteen base pairing based on the almost identical insertion efficiencies of A and 7-deaza-A, the latter of which lacks H-bonding capability at N7. The relative efficiencies for insertion of nucleotides that can form Watson-Crick base pairs parallel those for the Klenow fragment, whereas the Klenow fragment more strongly discriminates against mismatches, in accord with its greater shape selectivity. These results underscore the importance of H-bonding and Watson-Crick base pair geometry in the selection of nucleotides by both pol eta and the Klenow fragment, and the lesser role of shape selection in insertion by pol eta due to its more open and less constrained active site.

摘要

我们最近报道,芘核苷酸优先插入无碱基位点、胸腺嘧啶二聚体的3'-T以及酵母DNA聚合酶η(pol η)作用下的大多数未受损碱基对面。由于芘是一种没有氢键结合能力的非极性分子,dPMP插入的异常高效率归因于其卓越的碱基堆积能力,并突出了碱基堆积在pol η选择核苷酸过程中的重要性。为了研究氢键和碱基对几何结构在pol η选择核苷酸中的作用,我们测定了碱基修饰的核苷酸2,6-二氨基嘌呤、2-氨基嘌呤、6-氯嘌呤和次黄嘌呤的插入效率,这些核苷酸根据碱基对几何结构与模板碱基形成不同数量的氢键。沃森-克里克碱基配对似乎在选择与C和T相对插入的核苷酸类似物中起重要作用,这一点可从相对插入效率随沃森-克里克氢键数量减少以及供体-供体和受体-受体相互作用数量增加而降低得到证明。核苷酸插入的选择性在胸腺嘧啶二聚体的5'-T对面比3'-T对面更大,这与之前的研究结果一致,即5'-T比3'-T更刚性。此外,二聚体两个T对面插入A似乎是由沃森-克里克碱基配对介导的,而不是由 hoogsteen 碱基配对介导的,这是基于A和7-脱氮-A几乎相同的插入效率,后者在N7处缺乏氢键结合能力。能够形成沃森-克里克碱基对的核苷酸的相对插入效率与klenow片段的类似,而klenow片段对错配的区分更强,这与其更大的形状选择性一致。这些结果突出了氢键和沃森-克里克碱基对几何结构在pol η和klenow片段选择核苷酸中的重要性,以及由于pol η的活性位点更开放且限制更少,形状选择在其插入过程中的作用较小。

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