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首页> 外文期刊>The Journal of Chemical Physics >Theoretical method for full ab initio calculation of DNA/RNA-ligand interaction energy
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Theoretical method for full ab initio calculation of DNA/RNA-ligand interaction energy

机译:DNA / RNA-配体相互作用能的完全从头计算的理论方法

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In this paper,we further develop the molecular fractionation with conjugate caps (MFCC) scheme for quantum mechanical computation of DNA-ligand interaction energy.We study three oligonuclear acid interaction systems:dinucleotide dCG/water,trinucleotide dCGT/water,and a Watson-Crick paired DNA segment,dCGT/dGCA.Using the basic MFCC approach,the nucleotide chains are cut at each phosphate group and a pair of conjugate caps (concaps) are inserted.Five cap molecules have been tested among which the dimethyl phosphate anion is proposed to be the standard concap for application.For each system,one-dimensional interaction potential curves are computed using the MFCC method and the calculated interaction energies are found to be in excellent agreement with corresponding results obtained from the full system ab initio calculations.The current study extends the application of the MFCC method to ab initio calculations for DNA-or RNA-ligand interaction energies.
机译:在本文中,我们进一步开发了具有共轭帽(MFCC)方案的分子分级分离技术,用于DNA-配体相互作用能的量子力学计算。我们研究了三种寡核酸相互作用系统:二核苷酸dCG /水,三核苷酸dCGT /水和Watson-克里克配对的DNA片段,dCGT / dGCA。使用基本的MFCC方法,在每个磷酸基团处切割核苷酸链,并插入一对共轭帽(concaps)。已测试了五个帽分子,其中提出了磷酸二甲酯阴离子对于每个系统,使用MFCC方法计算一维相互作用势曲线,发现计算出的相互作用能与整个系统从头算得到的相应结果非常吻合。这项研究将MFCC方法的应用扩展到从头计算DNA-或RNA-配体相互作用能的过程。

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