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Electrostatics of Nucleic Acid Folding under Conformational Constraint

机译:构象约束下核酸折叠的静电

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摘要

RNA folding is enabled by interactions between the nucleic acid and its ion atmosphere, the mobile sheath of aqueous ions that surrounds and stabilizes it. Understanding the ion atmosphere requires the interplay of experiment and theory. However, even an apparently simple experiment to probe the ion atmosphere, measuring the dependence of DNA duplex stability upon ion concentration and identity, suffers from substantial complexity, because the unfolded ensemble contains many conformational states that are difficult to treat accurately with theory. To minimize this limitation, we measured the unfolding equilibrium of a DNA hairpin using a single-molecule optical trapping assay, in which the unfolded state is constrained to a limited set of elongated conformations.The unfolding free energy increased linearly with the logarithm of monovalent cation concentration for several cations, such that smaller cations tended to favor the folded state. Mg~(2+) stabilized the hairpin much more effectively at low concentrations than did any of the monovalent cations. Poisson-Boltzmann theory captured trends in hairpin stability measured for the monovalent cation titrations with reasonable accuracy, but failed to do so for the Mg~(2+) titrations. This finding is consistent with previous work, suggesting that Poisson-Boltzmann and other mean-field theories fail for higher valency cations where ion-ion correlation effects may become significant. The high-resolution data herein, because of the straightforward nature of both the folded and the unfolded states, should serve as benchmarks for the development of more accurate electrostatic theories that will be needed for a more quantitative and predictive understanding of nucleic acid folding.
机译:RNA折叠通过核酸与其离子气氛(包围并稳定其的水离子的可移动鞘)之间的相互作用实现。了解离子气氛需要实验和理论的相互作用。但是,即使一个看似简单的探测离子气氛的实验(测量DNA双链体稳定性对离子浓度和同一性的依赖性)也遭受了相当大的复杂性,因为展开的集合体包含许多构象状态,很难用理论准确地对其进行处理。为了使这种限制最小化,我们使用单分子光阱测定法测量了DNA发夹的展开平衡,其中展开状态被限制为一组有限的细长构象。展开自由能随单价阳离子的对数线性增加几个阳离子的浓度较高,因此较小的阳离子往往倾向于折叠状态。 Mg〜(2+)在低浓度下比任何一价阳离子都能更有效地稳定发夹。 Poisson-Boltzmann理论捕获了单价阳离子滴定法测得的发夹稳定性趋势,但准确度未达到Mg〜(2+)滴定法。这一发现与以前的工作是一致的,这表明泊松-玻耳兹曼理论和其他平均场理论对于离子价相关效应可能变得显着的更高价阳离子不起作用。由于折叠状态和未折叠状态的直接性质,此处的高分辨率数据应作为开发更准确的静电理论的基准,这对于更定量和预测性的核酸折叠理解将是必需的。

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  • 来源
    《Journal of the American Chemical Society》 |2012年第10期|p.4607-4614|共8页
  • 作者单位

    Biophysics Program, Stanford University, Stanford, California 94305, United States;

    Department of Applied Physics, Stanford University, Stanford, California 94305, United States;

    Department of Applied Physics, Stanford University, Stanford, California 94305, United States;

    Department of Applied Physics, Stanford University, Stanford, California 94305, United States Department of Physics, Stanford University, Stanford, California 94305, United States;

    Department of Applied Physics, Stanford University, Stanford, California 94305, United States Department of Biology, and Stanford University, Stanford, California 94305, United States;

    Department of Biochemistry, Stanford University, Stanford, California 94305, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:13:22

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