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Non-dissociative structural transitions of the Watson-Crick and reverse Watson-Crick А·Т DNA base pairs into the Hoogsteen and reverse Hoogsteen forms

机译:Watson-Crick和反向Watson-CrickА·ТDNA碱基对的非解离结构转变为Hoogsteen和反向Hoogsteen形式

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摘要

In this study it was theoretically shown that discovered by us recently (Brovarets’ et al., Frontiers in Chemistry, 2018, 6:8; doi: 10.3389/fchem.2018.00008) high-energetical, significantly non-planar (symmetry C1), short-lived wobbled conformers of the classical Watson-Crick А·Т(WC), reverse Watson-Crick А·Т(rWC), Hoogsteen А·Т(Н) and reverse Hoogsteen А·Т(rН) DNA base pairs are the intermediates of their pairwise А∙Т(WC)/А∙Т(rWC) ↔ А∙Т(H)/А∙Т(rH) conformational transformations. These transitions do not require for their realization the energy-consumable anisotropic rotation of the amino group of A around the exocyclic C6-N6 bond. They are controlled by the non-planar transition states with quasi-orthogonal geometry (symmetry C1) joined by the single intermolecular (Т)N3H···N6(А) H-bond (~4 kcal∙mol−1). The Gibbs free energies of activation for these non-dissociative, dipole-active conformational transitions consist 7.33 and 7.81 kcal∙mol−1, accordingly. Quantum-mechanical (QM) calculations in combination with Bader’s quantum theory of “Atoms in Molecules” (QTAIM) have been performed at the MP2/aug-cc-pVDZ//B3LYP/6-311++G(d,p) level of QM theory in the continuum with ε = 4 under normal conditions.
机译:在这项研究中,从理论上证明了我们最近发现的(Brovarets等,Frontiers in Chemistry,2018,6:8; doi:10.3389 / fchem.2018.00008)高能,明显非平面(对称C1),经典Watson-CrickА·Т(WC),反向Watson-CrickА·Т(rWC),HoogsteenА·Т(Н)和反向HoogsteenА·Т(rН)DNA碱基对的短时摆动构象异构体是它们的成对А∙Т(WC)/А∙Т(rWC)↔А∙Т(H)/А∙Т(rH)构象转换的中间体。这些转变不需要实现它们的A的氨基围绕环外的C6-N6键的能量消耗的各向异性旋转。它们受具有准正交几何形状(对称性C1)的非平面过渡态控制,该过渡态由单个分子间(Т)N3H···N6(А)H键(〜4 kcal∙mol -1 < / sup>)。这些非解离的偶极活性构象跃迁的吉布斯活化能分别为7.33和7.81 kcal∙mol -1 。已在MP2 / aug-cc-pVDZ // B3LYP / 6-311 ++ G(d,p)级别上结合Bader的“分子中的原子”量子理论(QTAIM)进行了量子力学(QM)计算。正常条件下ε= 4的连续体中的质量管理理论的有效性。

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