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Thermal Stability of RNA Structures with Bulky Cations in Mixed Aqueous Solutions

机译:混合水溶液中庞大阳离子RNA结构的热稳定性

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摘要

Bulky cations are used to develop nucleic-acid-based technologies for medical and technological applications in which nucleic acids function under nonaqueous conditions. In this study, the thermal stability of RNA structures was measured in the presence of various bulky cations in aqueous mixtures with organic solvents or polymer additives. The stability of oligonucleotide, transfer RNA, and polynucleotide structures was decreased in the presence of salts of tetrabutylammonium and tetrapentylammonium ions, and the stability and salt concentration dependences were dependent on cation sizes. The degree to which stability was dependent on salt concentration was correlated with reciprocals of the dielectric constants of mixed solutions, regardless of interactions between the cosolutes and RNA. Our results show that organic solvents affect the strength of electrostatic interactions between RNA and cations. Analysis of ion binding to RNA indicated greater enhancement of cation binding to RNA single strands than to duplexes in media with low dielectric constants. Furthermore, background bulky ions changed the dependence of RNA duplex stability on the concentration of metal ion salts. These unique properties of large tetraalkylammonium ions are useful for controlling the stability of RNA structures and its sensitivity to metal ion salts.
机译:庞大的阳离子用于开发基于核酸的医学和技术应用技术,其中核酸在非水条件下的作用。在该研究中,在具有有机溶剂或聚合物添加剂的水性混合物中的各种庞大阳离子存在下测量RNA结构的热稳定性。在四丁基铵和四丁基铵离子的盐存在下,寡核苷酸,转移RNA和多核苷酸结构的稳定性降低,稳定性和盐浓度依赖性依赖于阳离子尺寸。稳定性依赖于盐浓度的程度与混合溶液的介电常数的往复相互作用,无论辅助硬质和RNA之间的相互作用如何。我们的研究结果表明,有机溶剂会影响RNA和阳离子之间的静电相互作用。对RNA的离子结合分析表明,阳离子与RNA单链的阳离子结合的提高比具有低介电常数的介质中的双链体。此外,背景庞大的离子改变了RNA双工稳定性对金属离子盐浓度的依赖性。这些大四烷基铵离子的独特性质可用于控制RNA结构的稳定性及其对金属离子盐的敏感性。

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  • 来源
    《Biophysical Journal》 |2016年第7期|共11页
  • 作者单位

    Konan Univ Fac Frontiers Innovat Res Sci &

    Technol Dept Nanobiochem Kobe Hyogo Japan;

    Konan Univ Fac Frontiers Innovat Res Sci &

    Technol Dept Nanobiochem Kobe Hyogo Japan;

    Konan Univ Fac Frontiers Innovat Res Sci &

    Technol Dept Nanobiochem Kobe Hyogo Japan;

    Konan Univ Fac Frontiers Innovat Res Sci &

    Technol Dept Nanobiochem Kobe Hyogo Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;
  • 关键词

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