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Studies of a mispaired DNA recognized by a rhodium intercalator based on the ABEEMσπ/MM method

机译:基于ABEEMσπ/ MM方法的铑嵌入剂识别的错配DNA的研究

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The mispaired DNA bound by a rhodium intercalator was simulated based on the newly constructed ABEEMσπ/MM fluctuating charge model. The RMSD of atomic coordinates between the simulated structure and crystal structure fell in a range of 0.07–0.14 ?. It indicates that, the present ABEEMσπ/MM method is able to well simulate the system of mispaired DNA and metal complex. Then we studied the recognition of the Δ-[Rh(bpy)_2chrysi]~(3+) [chrysene-5,6-quinone diimine (chrysi)] to DNA double helix including an AC mismatched pair by molecular modeling. The results demonstrate that the present rhodium complex optimally chooses the major groove to recognize the A4C21/A5T20 site next to the AC mismatched pair. In that case, the mismatched C21 is going to flip into the major groove, while the A4 is keeping π-stacked with the chrysi ligand. The hydrogen bonds of A4?C21 are broken. The interaction energy between Rh complex and DNA is estimated ?410.09 kcal/mol, which is lower than that for the metal complex inserting the DNA at the matched site and mismatched G3C22/A4C21 site of the DNA duplex from the major groove.
机译:基于新构建的ABEEMσπ/ MM波动电荷模型,模拟了由铑嵌入剂结合的错配DNA。模拟结构和晶体结构之间的原子坐标的RMSD落在0.07–0.14?的范围内。这表明,目前的ABEEMσπ/ MM方法能够很好地模拟错配的DNA和金属络合物的系统。然后,我们通过分子建模研究了Δ-[Rh(bpy)_2chrysi]〜(3+)[chrysene-5,6-quinone diimine(chrysi)]对DNA双螺旋(包括AC错配对)的识别。结果表明,本发明的铑配合物最佳地选择了主要凹槽以识别AC错配对旁边的A4C21 / A5T20位点。在这种情况下,错配的C21会进入主凹槽,而A4与chrysi配体保持π堆积。 A4→C21的氢键断裂。 Rh复合物与DNA之间的相互作用能估计为410.09 kcal / mol,这比金属复合物的DNA插入主双沟的DNA双链体的匹配位点和错配的G3C22 / A4C21位点时要低。

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