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Altered structural fluctuations in duplex RNA versus DNA: a conformational switch involving base pair opening

机译:双链RNA与DNA的结构波动改变:涉及碱基对开放的构象转换

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摘要

DNA and RNA are known to have different structural properties. In the present study, molecular dynamics (MD) simulations on a series of RNA and DNA duplexes indicate differential structural flexibility for the two classes of oligonucleotides. In duplex RNA, multiple base pairs experienced local opening events into the major groove on the nanosecond time scale, while such events were not observed in the DNA simulations. Three factors are indicated to be responsible for the base opening events in RNA: solvent–base interactions, 2′OH(n)–O4′(n+1) intra-strand hydrogen bonding, and enhanced rigid body motion of RNA at the nucleoside level. Water molecules in the major groove of RNA contribute to initiation of base pair opening. Stabilization of the base pair open state is due to a ‘conformational switch’ comprised of 2′OH(n)–O4′(n+1) hydrogen bonding and a rigid body motion of the nucleoside moiety in RNA. This rigid body motion is associated with decreased flexibility of the glycosyl linkage and sugar moieties in A-form structures. The observed opening rates in RNA are consistent with the imino proton exchange experiments for AU base pairs, although not for GC base pairs, while structural and flexibility changes associated with the proposed conformational switch are consistent with survey data of RNA and DNA crystal structures. The possible relevance of base pair opening events in RNA to its many biological functions is discussed.
机译:已知DNA和RNA具有不同的结构特性。在本研究中,对一系列RNA和DNA双链体的分子动力学(MD)模拟表明,这两类寡核苷酸具有不同的结构柔性。在双链体RNA中,多个碱基对经历了纳秒级的进入主沟的局部开放事件,而在DNA模拟中未观察到此类事件。表明了三个因素是造成RNA碱基打开事件的原因:溶剂-碱基相互作用,2'OH(n)-O4'(n + 1)链内氢键结合以及RNA在核苷侧的刚体运动增强水平。 RNA主沟中的水分子有助于碱基对打开。碱基对开放状态的稳定是由于“构象转换”由2'OH(n)–O4'(n + 1)氢键组成,以及RNA中核苷部分的刚性运动。这种刚体运动与A型结构中糖基键和糖部分的柔性降低有关。观察到的RNA的开放速率与AU碱基对的亚氨基质子交换实验一致,尽管与GC碱基对不一致,而与拟议的构象转换有关的结构和柔韧性变化与RNA和DNA晶体结构的调查数据一致。讨论了RNA中碱基对开放事件与其许多生物学功能的可能相关性。

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