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A combined molecular dynamics/density-functional theoretical study on the structure and electronic properties of hydrating water molecules in the minor groove of decameric DNA duplex

机译:十聚体DNA双链体小沟中水合水分子的结构和电子性质的分子动力学/密度泛函理论研究

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摘要

A combined molecular dynamics/density-functional theoretical study was carried out to address the propensity of ambient water to form cross-strand bridging water (CSBW) and their effects on the electronic properties of a fully hydrated DNA duplex 5′-d(CCATTAATGG)2-3′. The simulation shows ubiquitous presence of up to five CSBWs along the minor groove, each with residence time ranging from 400 ps to 750 ps. The molecular orbitals localized on these CSBWs are nearly degenerate in energy with the highest occupied molecular orbital of DNA localized on guanine bases, strongly indicating that the hole transport along the guanines is mediated by the ubiquitous CSBWs.
机译:进行了结合分子动力学/密度泛函的理论研究,以研究环境水形成交叉链桥水(CSBW)的倾向及其对完全水合DNA双链体5'-d(CCATTAATGG)的电子性能的影响2-3′。仿真显示,沿小凹槽普遍存在多达五个CSBW,每个CSBW的停留时间范围为400 ps至750 ps。定位在这些CSBWs上的分子轨道在能量上几乎简并,而位于鸟嘌呤碱基上的DNA占据的分子轨道最高,强烈表明沿鸟嘌呤的空穴传输是由无处不在的CSBWs介导的。

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