Important factors stabilizing stacking interaction between 3-nitropyrrole and natural nucleobases revealed by ab initio calculations.

Kohji Seio, Hisashi Ukawa, Koh-ichiro Shohda, Mitsuo Sekine
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Abstract

Stacking energies between canonical nucleobases and a universal base, 3-nitropyrrole (3-NP), were estimated by use of molecular orbital (MO) and molecular mechanics (MM) calculations. The detailed analysis of the energy profiles revealed the importance of the London dispersion energy to stabilize the stacked dimers and electrostatic interactions to determine the orientation of 3-NP to the nucleobases in the dimers. Although the energy profiles of 3-NP/natural base dimers obtained by the MO and MM calculations were qualitatively correlated with each other, the correlations were poorer than those obtained for the stacking between natural bases. The origin of the difference between 3-NP and natural bases will be discussed to understand the possibility and limitation of the current MM calculations for the simulation and design of other universal bases.

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通过从头计算揭示了稳定3-硝基吡咯与天然核碱基堆积相互作用的重要因素。
利用分子轨道(MO)和分子力学(MM)计算方法,估计了典型核碱基与通用碱3-硝基吡咯(3-NP)之间的层能。详细的能量分布分析揭示了伦敦色散能量对稳定堆叠二聚体和静电相互作用对确定3-NP对二聚体中核碱基的取向的重要性。虽然通过MO和MM计算得到的3-NP/天然碱二聚体的能量分布之间存在定性相关性,但相关性不如天然碱之间的叠加得到的相关性。本文将讨论3-NP与天然碱基之间差异的起源,以了解当前MM计算对其他通用碱基的模拟和设计的可能性和局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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