Compatible solute influence on nucleic acids: many questions but few answers.

Matthias Kurz
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引用次数: 80

Abstract

Compatible solutes are small organic osmolytes including but not limited to sugars, polyols, amino acids, and their derivatives. They are compatible with cell metabolism even at molar concentrations. A variety of organisms synthesize or take up compatible solutes for adaptation to extreme environments. In addition to their protective action on whole cells, compatible solutes display significant effects on biomolecules in vitro. These include stabilization of native protein and nucleic acid structures. They are used as additives in polymerase chain reactions to increase product yield and specificity, but also in other nucleic acid and protein applications. Interactions of compatible solutes with nucleic acids and protein-nucleic acid complexes are much less understood than the corresponding interactions of compatible solutes with proteins. Although we may begin to understand solute/nucleic acid interactions there are only few answers to the many questions we have. I summarize here the current state of knowledge and discuss possible molecular mechanisms and thermodynamics.

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相容溶质对核酸的影响:问题多,答案少。
相容溶质是小的有机渗透物,包括但不限于糖、多元醇、氨基酸及其衍生物。即使在摩尔浓度下,它们也与细胞代谢相容。多种生物体合成或吸收相容的溶质以适应极端环境。除了对整个细胞的保护作用外,相容性溶质在体外对生物分子也有显著的影响。这些包括天然蛋白质和核酸结构的稳定。它们被用作聚合酶链反应的添加剂,以提高产品收率和特异性,但也用于其他核酸和蛋白质应用。相容性溶质与核酸和蛋白质-核酸复合物的相互作用比相容性溶质与蛋白质的相互作用了解得少得多。尽管我们可能开始了解溶质/核酸的相互作用,但对于我们所拥有的许多问题,只有很少的答案。我在这里总结了目前的知识状况,并讨论了可能的分子机制和热力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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