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Intrinsic dynamic and static nature of each HB in the multi-HBs between nucleobase pairs and its behavior, elucidated with QTAIM dual functional analysis and QC calculations

机译:核碱基对与其行为之间的多HB中每个HB的内在动态和静态性质,阐明了Qtai毒双功能分析和QC计算

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摘要

The intrinsic dynamic and static nature of each HB in the multi-HBs between nucleobase pairs (Nu-Nu ') is elucidated with QTAIM dual functional analysis (QTAIM-DFA). Perturbed structures generated using coordinates derived from the compliance constants (C-ii) are employed for QTAIM-DFA. The method is called CIV. Two, three, or four HBs are detected for Nu-Nu '. Each HB in Nu-Nu ' is predicted to have the nature of CT-TBP (trigonal bipyramidal adduct formation through charge transfer (CT)), CT-MC (molecular complex formation through CT), or t-HBwc(typical HB with covalency), while the vdW nature is predicted for the C-HMIDLINE HORIZONTAL ELLIPSISX interactions, for example. Energies for the formation of the pairs (Delta E) are linearly correlated with the total values ofC(ii)(-1)in Nu-Nu '. The totalC(ii)(-1)values are obtained by summing eachC(ii)(-1)value, similarly to the case of Ohm's law for the parallel connection in the electric resistance. The total Delta Evalue for a nucleobase pair could be fractionalized to each HB, based on eachC(ii)(-1)value. The perturbed structures generated with CIV are very close to those generated with the partial optimization method, when the changes in the interaction distances are very small. The results provide useful insights for better understanding DNA processes, although they are highly enzymatic.
机译:用Qtaim双功能分析(Qtaim-DFA)阐明了核碱基对(NU-NU')之间的每个HB中的每个HB的内在动态和静态性质。使用源自顺应常数(C-II)的坐标产生的扰动结构用于Qtaim-DFA。该方法称为CIV。为Nu-Nu'检测到两种,三个或四个HBS。预计Nu-Nu的每Hb中的HB具有CT-TBP的性质(通过电荷转移(CT)),CT-MC(通过CT)或T-HBWC(典型的HB具有共和度的典型HB)的性质例如,虽然例如,预测VDW性质的C-Hmidline水平椭圆形isx相互作用。对成对的形成(Delta E)的能量与Nu-Nu的总值(II)( - 1)的总值线性相关。通过概括各自(II)( - 1)值,同样地获得总计(II)( - 1)值,与欧姆对电阻的平行连接的定律相似。核毒碱基对的总δ评估可以基于各自的(II)( - 1)值,为每Hb分裂。当相互作用距离的变化非常小时,用文明产生的扰动结构非常接近与部分优化方法产生的那些。结果为更好的理解DNA过程提供了有用的见解,尽管它们是高度酶促的。

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  • 来源
    《RSC Advances》 |2020年第41期|共13页
  • 作者单位

    Wakayama Univ Fac Syst Engn 930 Sakaedani Wakayama 6408510 Japan;

    Wakayama Univ Fac Syst Engn 930 Sakaedani Wakayama 6408510 Japan;

    Wakayama Univ Fac Syst Engn 930 Sakaedani Wakayama 6408510 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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