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Hammerhead ribozyme activity and oligonucleotide duplex stability in mixed solutions of water and organic compounds

机译:水和有机化合物混合溶液中的锤头核酶活性和寡核苷酸双链体稳定性

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摘要

Nucleic acids are useful for biomedical targeting and sensing applications in which the molecular environment is different from that of a dilute aqueous solution. In this study, the influence of various types of mixed solutions of water and water-soluble organic compounds on RNA was investigated by measuring the catalytic activity of the hammerhead ribozyme and the thermodynamic stability of an oligonucleotide duplex. The compounds with a net neutral charge, such as poly(ethylene glycol), small primary alcohols, amide compounds, and aprotic solvent molecules, added at high concentrations changed the ribozyme-catalyzed RNA cleavage rate, with the magnitude of the effect dependent on the NaCl concentration. These compounds also changed the thermodynamic stability of RNA base pairs of an oligonucleotide duplex and its dependence on the NaCl concentration. Specific interactions with RNA molecules and reduced water activity could account for the inhibiting effects on the ribozyme catalysis and destabilizing effects on the duplex stability. The salt concentration dependence data correlated with the dielectric constant, but not with water activity, viscosity, and the size of organic compounds. This observation suggests the significance of the dielectric constant effects on the RNA reactions under molecular crowding conditions created by organic compounds.
机译:核酸可用于分子环境不同于稀水溶液的生物医学靶向和传感应用。在这项研究中,通过测量锤头核酶的催化活性和寡核苷酸双链体的热力学稳定性,研究了各种类型的水和水溶性有机化合物的混合溶液对RNA的影响。高浓度添加的带有中性净电荷的化合物(例如聚乙二醇,小的伯醇,酰胺化合物和非质子传递溶剂分子)改变了核酶催化的RNA裂解率,其影响程度取决于NaCl浓度。这些化合物还改变了寡核苷酸双链体的RNA碱基对的热力学稳定性及其对NaCl浓度的依赖性。与RNA分子的特异性相互作用和降低的水活度可以解释对核酶催化的抑制作用和对双链体稳定性的破坏作用。盐浓度依赖性数据与介电常数相关,但与水活度,粘度和有机化合物的大小无关。该观察结果表明介电常数效应在有机化合物产生的分子拥挤条件下对RNA反应的重要性。

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