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水合作用、离子释放和排除体积对三链和双链DNA熔解的影响。

Effects of hydration, ion release, and excluded volume on the melting of triplex and duplex DNA.

作者信息

Spink C H, Chaires J B

机构信息

Department of Chemistry, State University of New York, Cortland 13045, USA.

出版信息

Biochemistry. 1999 Jan 5;38(1):496-508. doi: 10.1021/bi9820154.

Abstract

The stability of DNA duplex and triplex structures not only depends on molecular forces such as base pairing or tripling or electrostatic interactions but also is sensitive to its aqueous environment. This paper presents data on the melting of Escherichia coli and poly(dA).poly(dT) duplex DNA and on the poly(dT).poly(dA). poly(dT) triplex in a variety of media to assess the contributions from the osmotic status and salt content of the media. The effects of volume exclusion on the stability of the DNA structures are also studied. From thermal transition measurements in the presence of low-molecular weight osmotic stressors, the number of water molecules released upon melting is found to be four waters per base pair for duplex melting and one water for the conversion of triplex to single-strand and duplex. The effects of Na+ counterion binding are also determined in ethylene glycol solutions so that the variation of counterion binding with water activity is evaluated. The data show that there is a modest decrease in the extent of counterion binding for both duplex and triplex as water activity decreases. Finally, using larger polyethylene glycol cosolutes, the effects on melting of volume exclusion by the solutes are assessed, and the results correlated with simple geometric models for the excluded volume. These results point out that DNA stability is sensitive to important conditions in the environment of the duplex or triplex, and thus, conformation and reactivity can be influenced by these solution conditions.

摘要

DNA双链和三链结构的稳定性不仅取决于诸如碱基配对或三联体形成或静电相互作用等分子力,还对其水环境敏感。本文展示了在多种介质中大肠杆菌和聚(dA)·聚(dT)双链DNA以及聚(dT)·聚(dA)·聚(dT)三链体解链的数据,以评估介质的渗透状态和盐含量的贡献。还研究了体积排阻对DNA结构稳定性的影响。通过在低分子量渗透应激源存在下的热转变测量,发现双链解链时每碱基对释放的水分子数为四个,三链转变为单链和双链时释放一个水分子。还在乙二醇溶液中确定了Na⁺反离子结合的影响,从而评估反离子结合随水活性的变化。数据表明,随着水活性降低,双链和三链的反离子结合程度均适度降低。最后,使用较大的聚乙二醇共溶质,评估了溶质体积排阻对解链的影响,并将结果与排除体积的简单几何模型相关联。这些结果指出,DNA稳定性对双链或三链环境中的重要条件敏感,因此,构象和反应性会受到这些溶液条件的影响。

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