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Modelling of DNA complexes with distamycin analogues using an ab initio continuum solvent model

机译:使用从头算连续性溶剂模型对与双霉素类似物的DNA复合物进行建模

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Model systems related to non-covalent minor groove DNA complexes with distamycin analogues were investigated using the Turbomole and Gaussian quantum chemical packages. The role of molecular shape, electrostatic field and conformer energies in the complex formation was discussed. The ab initio calculations included the COSMO solvent model. If compared to vacuum computations, polar solvent significantly destabilizes such complexes and increases conformational flexibility of distamycin. The DNA complex formation appears to be driven mainly by entropy lowering and complementarity of molecular shapes. The NH moiety of the amide group preferably points to the base pair according to the computations, in agreement with experimental data. [References: 29]
机译:使用Turbomole和Gaussian量子化学软件包研究了与distamycin类似物的非共价小沟DNA复合物有关的模型系统。讨论了分子形状,静电场和构象能在复合物形成中的作用。从头计算包括COSMO溶剂模型。如果与真空计算相比,极性溶剂会显着破坏此类配合物的稳定性,并增加间他霉素的构象柔韧性。 DNA复合物的形成似乎主要由熵降低和分子形状的互补性驱动。根据计算,与实验数据一致,酰胺基的NH部分优选指向碱基对。 [参考:29]

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