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Influence of abasic and anucleosidic sites on the stability conformation and melting behavior of a DNA duplex: correlations of thermodynamic and structural data.

机译:无碱基和无碱基位点对DNA双链体的稳定性构象和解链行为的影响:热力学和结构数据的相关性。

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摘要

We report a complete thermodynamic characterization of the impact of abasic and anucleosidic lesions on the stability, conformation, and melting behavior of a DNA duplex. The requisite thermodynamic data were obtained by using a combination of spectroscopic and calorimetric techniques to investigate helix-to-coil transitions in a family of DNA duplexes of the form d(CGCATGAGTACGC).d(GCGTACXCATGCG), where X corresponds to a thymidine residue in the parent Watson-Crick duplex and to an abasic or anucleosidic site in the modified duplexes. The data derived from these studies reveal that incorporation of an abasic site into a DNA duplex dramatically reduces the duplex stability, transition enthalpy, and transition entropy. The magnitudes of these lesion-induced effects are greater than one would expect based on simple nearest-neighbor considerations. Nearly identical thermodynamic data are obtained when the modified duplex contains an anucleosidic site rather than an abasic site. This observation suggests that the thermodynamic impact of these lesions primarily results from removal of the base rather than the sugar ring. Significantly, the melting cooperativities of the abasic and anucleosidic derivatives are identical with each other and with the corresponding unmodified Watson-Crick parent duplex. This result suggests that the phosphodiester backbone, rather than the base-sugar network, serves as the primary propagation path for the communication of cooperative melting effects. We propose molecular interpretations for the thermodynamic data based on the structural picture that has emerged from the NMR studies of Patel and coworkers on the same family of modified and unmodified DNA duplexes [Kalnik, M.W., Chang, C.-N., Grollman, A.P. & Patel, D.J. (1988) Biochemistry 27, 924-931].
机译:我们报告了完整的热力学表征的无碱基和无核损害的稳定性,构象和DNA双链体的熔化行为的影响。通过使用光谱学和量热技术的组合来研究d(CGCATGAGTACGC).d(GCGTACXCATGCG)形式的DNA双链体家族中螺旋到线圈的转变,获得了必要的热力学数据,其中X对应于亲本沃森-克里克双链体和修饰双链体中的无碱基或无核苷位点。这些研究得出的数据表明,将无碱基位点掺入DNA双链体会极大地降低双链体的稳定性,过渡焓和过渡熵。根据简单的最近邻因素,这些病变诱发的影响的幅度大于预期。当修饰的双链体包含一个无核苷位点而不是无碱基位点时,可获得几乎相同的热力学数据。该观察结果表明,这些损伤的热力学影响主要是由于除去碱基而不是糖环引起的。显着地,无碱基和无碱基衍生物的熔融合作性彼此相同,并且与相应的未修饰的Watson-Crick亲本双链体相同。该结果表明,磷酸二酯主链而非糖基糖网络充当了传递协同融解效应的主要传播途径。我们基于结构相似的结构图提出了热力学数据的分子解释,该结构图来自Patel及其同事对同一家族的修饰和未修饰DNA双链体进行的NMR研究[Kalnik,MW,Chang,C.-N.,Grollman,AP &Patel,DJ (1988)Biochemistry 27,924-931]。

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