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对氨基芴诱导的构象异质性和核苷酸切除修复的序列效应的光谱学和理论见解。

Spectroscopic and theoretical insights into sequence effects of aminofluorene-induced conformational heterogeneity and nucleotide excision repair.

作者信息

Meneni Srinivasa Rao, Shell Steven M, Gao Lan, Jurecka Petr, Lee Wang, Sponer Jiri, Zou Yue, Chiarelli M Paul, Cho Bongsup P

机构信息

Department of Biomedical and Pharmaceutical Sciences, College of Pharmacy, University of Rhode Island, 41 Lower College Road, Kingston, Rhode Island 02881, USA.

出版信息

Biochemistry. 2007 Oct 9;46(40):11263-78. doi: 10.1021/bi700858s. Epub 2007 Sep 18.

Abstract

A systematic spectroscopic and computational study was conducted in order to probe the influence of base sequences on stacked (S) versus B-type (B) conformational heterogeneity induced by the major dG adduct derived from the model carcinogen 7-fluoro-2-aminofluorene (FAF). We prepared and characterized eight 12-mer DNA duplexes (-AGN- series, d[CTTCTAGNCCTC]; -CGN- series, d[CTTCTCGNCCTC]), in which the central guanines (G*) were site-specifically modified with FAF with varying flanking bases (N = G, A, C, T). S/B heterogeneity was examined by CD, UV, and dynamic 19F NMR spectroscopy. All the modified duplexes studied followed a typical dynamic exchange between the S and B conformers in a sequence dependent manner. Specifically, purine bases at the 3'-flanking site promoted the S conformation (G > A > C > T). Simulation analysis showed that the S/B energy barriers were in the 14-16 kcal/mol range. The correlation times (tau = 1/kappa) were found to be in the millisecond range at 20 degrees C. The van der Waals energy force field calculations indicated the importance of the stacking interaction between the carcinogen and neighboring base pairs. Quantum mechanics calculations showed the existence of correlations between the total interaction energies (including electrostatic and solvation effects) and the S/B population ratios. The S/B equilibrium seems to modulate the efficiency of Escherichia coli UvrABC-based nucleotide excision repair in a conformation-specific manner: i.e., greater repair susceptibility for the S over B conformation and for the -AGN- over the -CGN- series. The results indicate a novel structure-function relationship, which provides insights into how bulky DNA adducts are accommodated by UvrABC proteins.

摘要

为了探究碱基序列对由模型致癌物7-氟-2-氨基芴(FAF)衍生的主要dG加合物诱导的堆积(S)与B型(B)构象异质性的影响,进行了一项系统的光谱和计算研究。我们制备并表征了八个12聚体DNA双链体(-AGN-系列,d[CTTCTAGNCCTC];-CGN-系列,d[CTTCTCGNCCTC]),其中中心鸟嘌呤(G*)被FAF位点特异性修饰,侧翼碱基不同(N = G、A、C、T)。通过圆二色光谱(CD)、紫外光谱(UV)和动态19F核磁共振光谱研究了S/B异质性。所有研究的修饰双链体都以序列依赖的方式在S和B构象之间进行典型的动态交换。具体而言,3'侧翼位点的嘌呤碱基促进了S构象(G > A > C > T)。模拟分析表明,S/B能量障碍在14 - 16千卡/摩尔范围内。在20℃时,相关时间(tau = 1/kappa)在毫秒范围内。范德华能量力场计算表明致癌物与相邻碱基对之间堆积相互作用的重要性。量子力学计算表明总相互作用能(包括静电和溶剂化效应)与S/B种群比率之间存在相关性。S/B平衡似乎以构象特异性方式调节基于大肠杆菌UvrABC的核苷酸切除修复的效率:即,S构象比B构象以及-AGN-系列比-CGN-系列具有更高的修复敏感性。结果表明了一种新的结构 - 功能关系,这为UvrABC蛋白如何容纳大体积DNA加合物提供了见解。

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