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Watson-Crick Base Pairing, Electronic and Photophysical Properties of Triazole Modified Adenine Analogues: A Computational Study

机译:Watson-Crick碱基配对,三唑修饰的腺嘌呤类似物的电子和光物理性质:计算研究

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摘要

We employ first-principles Density Functional Theory (DFT) and time-dependent DFT (TDDFT) to elucidate structural, electronic and optical properties of a few recently reported triazole adenine nucleobase analogues. The results are compared against the findings obtained for both natural adenine nucleobase and available experimental data. The optical absorption of these adenine analogues are calculated both in gas-phase and in solvent (methanol) using Polarized Continuum Model (PCM). We find that all the analogues show a red-shifted absorption profile as compared to adenine. Our simulated emission spectra in solvent compare fairly well with experimentally observed results. We investigate base paring ability of these adenine analogues with thymine. The calculations on the intrinsic stability of these base pairs ascertain that all the adenine analogues form the hydrogen bonded Watson-Crick base pair with similar H-bonding energy as obtained for natural adenine-thymine base pair. In our study, we provide a microscopic origin of the low-energy absorption and emission peaks, observed experimentally.
机译:我们采用第一原理密度泛函理论(DFT)和时变DFT(TDDFT)来阐明一些最近报道的三唑腺嘌呤核碱基类似物的结构,电子和光学性质。将结果与获得的天然腺嘌呤核苷碱基和现有实验数据的结果进行比较。这些腺嘌呤类似物的光吸收在气相和溶剂(甲醇)中均使用极化连续谱模型(PCM)计算。我们发现,与腺嘌呤相比,所有类似物均显示出红移的吸收曲线。我们在溶剂中的模拟发射光谱与实验观察到的结果相当好。我们调查与胸腺嘧啶这些腺嘌呤类似物的基本配对能力。对这些碱基对的固有稳定性的计算确定,所有腺嘌呤类似物形成氢键合的Watson-Crick碱基对,其具有与天然腺嘌呤-胸腺嘧啶碱基对所获得的相似的H键能。在我们的研究中,我们提供了通过实验观察到的低能量吸收和发射峰的微观起源。

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