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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Charge transfer through DNA/DNA duplexes and DNA/RNA hybrids: Complex theoretical and experimental studies
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Charge transfer through DNA/DNA duplexes and DNA/RNA hybrids: Complex theoretical and experimental studies

机译:通过DNA / DNA双链体和DNA / RNA杂种的电荷转移:复杂的理论和实验研究

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摘要

Oligonucleotides conduct electric charge via various mechanisms and their characterization and understanding is a very important and complicated task. In this work, experimental (temperature dependent steady state fluorescence spectroscopy, time-resolved fluorescence spectroscopy) and theoretical (Density Functional Theory) approaches were combined to study charge transfer processes in short DNA/DNA and RNA/DNA duplexes with virtually equivalent sequences. The experimental results were consistent with the theoretical model - the delocalized nature of HOMO orbitals and holes, base stacking, electronic coupling and conformational flexibility formed the conditions for more effective short distance charge transfer processes in RNA/DNA hybrids. RNA/DNA and DNA/DNA charge transfer properties were strongly connected with temperature affected structural changes of molecular systems - charge transfer could be used as a probe of even tiny changes of molecular structures and settings.
机译:寡核苷酸通过各种机制进行电荷,其特征和理解是一个非常重要和复杂的任务。 在这项工作中,将实验(温度依赖性稳态荧光光谱,时间分辨荧光光谱)和理论(密度函数理论)组合方法,以研究短DNA / DNA和RNA / DNA双链体中的电荷转移过程与几乎等同的序列。 实验结果与理论模型一致 - Homo轨道和孔的分层性质,基础堆叠,电子耦合和构象灵活性形成了RNA / DNA杂种中更有效的短距离电荷转移过程的条件。 RNA / DNA和DNA / DNA电荷转移性能强烈地与温度影响分子系统的结构变化 - 电荷转移可用作甚至是分子结构和环境变化的探针。

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