首页> 美国卫生研究院文献>Nucleic Acids Research >Interaction of berenil with the tyrT DNA sequence studied by footprinting and molecular modelling. Implications for the design of sequence-specific DNA recognition agents.
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Interaction of berenil with the tyrT DNA sequence studied by footprinting and molecular modelling. Implications for the design of sequence-specific DNA recognition agents.

机译:通过足迹和分子建模研究了贝雷尼与tyrT DNA序列的相互作用。对序列特异性DNA识别剂设计的意义。

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摘要

We have developed a technique of partially-restrained molecular mechanics enthalpy minimisation which enables the sequence-dependence of the DNA binding of a non-intercalating ligand to be studied for arbitrary sequences of considerable length (greater than = 60 base-pairs). The technique has been applied to analyse the binding of berenil to the minor groove of a 60 base-pair sequence derived from the tyrT promoter; the results are compared with those obtained by DNAse I and hydroxyl radical footprinting on the same sequence. The calculated and experimentally observed patterns of binding are in good agreement. Analysis of the modelling data highlights the importance of DNA flexibility in ligand binding. Further, the electrostatic component of the interaction tends to favour binding to AT-rich regions, whilst the van der Waals interaction energy term favours GC-rich ones. The results also suggest that an important contribution to the observed preference for binding in AT-rich regions arises from lower DNA perturbation energies and is not accompanied by reduced DNA structural perturbations in such sequences. It is therefore concluded that those modes of DNA distortion favourable to binding are probably more flexible in AT-rich regions. The structure of the modelled DNA sequence has also been analysed in terms of helical parameters. For the DNA energy-minimised in the absence of berenil, certain helical parameters show marked sequence-dependence. For example, purine-pyrimidine (R-Y) base pairs show a consistent positive buckle whereas this feature is consistently negative for Y-R pairs. Further, CG steps show lower than average values of slide while GC steps show lower than average values of rise. Similar analysis of the modelling data from the calculations including berenil highlights the importance of DNA flexibility in ligand binding. We observe that the binding of berenil induces characteristic responses in different helical parameters for the base-pairs around the binding site. For example, buckle and tilt tend to become more negative to the 5'-side of the binding site and more positive to the 3'-side, while the base steps at either side of the centre of the site show increased twist and decreased roll.
机译:我们已经开发出一种部分约束分子力学焓最小化的技术,该技术使非插入配体的DNA结合的序列依赖性能够研究相当长的任意序列(大于60个碱基对)。该技术已被用于分析苯酚与来自tyrT启动子的60个碱基对序列的小沟的结合。将结果与相同序列上通过DNAse I和羟基自由基足迹法获得的结果进行比较。计算的和实验观察到的结合模式非常吻合。对建模数据的分析突出了DNA柔韧性在配体结合中的重要性。此外,相互作用的静电成分倾向于有利于与富含AT的区域结合,而范德华相互作用能术语有利于富含GC的区域。结果还表明,观察到的在富含AT的区域中进行结合的偏好的重要贡献来自较低的DNA扰动能,并且没有伴随此类序列中DNA结构扰动的减少。因此得出的结论是,那些有利于结合的DNA畸变模式在富含AT的区域可能更灵活。还已经根据螺旋参数分析了建模的DNA序列的结构。对于在没有苯苯胺的情况下使DNA能量最小的情况,某些螺旋参数显示出明显的序列依赖性。例如,嘌呤-嘧啶(R-Y)碱基对显示出一致的正屈曲,而对于Y-R对则该特征始终为阴性。此外,CG步骤显示出低于玻片的平均值,而GC步骤显示出低于上升平均值。从包括苯苯胺在内的计算中对建模数据的类似分析突出了DNA柔性在配体结合中的重要性。我们观察到苯酚的结合在结合位点周围的碱基对的不同螺旋参数中诱导特征响应。例如,屈曲和倾斜倾向于对结合位点的5'侧变得更负而对3'侧变得更正,而在位点中心的任一侧的基部台阶显示出增加的扭曲和降低的侧倾。

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