Suppr超能文献

在渗透溶质存在下DNA解链的焓值。

Enthalpies of DNA melting in the presence of osmolytes.

作者信息

Spink Charles H, Garbett Nichola, Chaires Jonathan B

机构信息

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

出版信息

Biophys Chem. 2007 Mar;126(1-3):176-85. doi: 10.1016/j.bpc.2006.07.013. Epub 2006 Aug 21.

Abstract

The melting of DNA in the presence of osmolytes has been studied with the intention of obtaining information about how base pair stability is affected by changes in solution conditions. In previous investigations, the melting enthalpies were assumed to be constant as osmolalities change, but no systematic evaluation of whether this condition is true has been offered. This paper presents calorimetric data on the melting of two synthetic DNA samples in the presence of a number of common osmolytes. Poly(dAdT)*poly(dTdA) and poly(dGdC)*poly(dCdG) melting have been examined by differential scanning calorimetry in solutions containing ethylene glycol, glycerol, sucrose, urea, betaine, PEG 200 and PEG 1450 at increasing osmolalities. The results show small, but significant changes in the enthalpy of melting of the two polynucleotides that are different, depending on the structure of the cosolvent. The polyols, ethylene glycol, glycerol, PEG 200 and also urea all show decreases in melting enthalpy, while betaine and sucrose display increases with increasing concentration of cosolvent. The large stabilizing PEG 1450 shows no change within the experimental errors. Using concepts relating to preferential interactions of the cosolvents with the DNA base pairs, it is possible to interpret some of the observed changes in the thermodynamic properties of melting. The results indicate that there is strong entropy-enthalpy compensation upon melting base pairs, but entropy increases dominate to cause the decreases in stability with increased cosolvent concentration. Excess hydration parameters are evaluated and their magnitudes discussed in terms of changes in cosolvent interactions with the DNA base pairs.

摘要

为了获取有关溶液条件变化如何影响碱基对稳定性的信息,人们对在渗透压剂存在下DNA的解链进行了研究。在先前的研究中,人们假定随着渗透压的变化,解链焓是恒定的,但尚未对这一条件是否成立进行系统评估。本文给出了在多种常见渗透压剂存在下两种合成DNA样品解链的量热数据。通过差示扫描量热法研究了聚(dAdT)*聚(dTdA)和聚(dGdC)*聚(dCdG)在含有乙二醇、甘油、蔗糖、尿素、甜菜碱、聚乙二醇200和聚乙二醇1450且渗透压不断增加的溶液中的解链情况。结果表明,两种多核苷酸解链焓的变化虽小但显著,且因共溶剂的结构不同而有所差异。多元醇、乙二醇、甘油、聚乙二醇200以及尿素均使解链焓降低,而甜菜碱和蔗糖则随着共溶剂浓度的增加而使解链焓升高。大分子稳定化剂聚乙二醇1450在实验误差范围内无变化。利用与共溶剂和DNA碱基对优先相互作用相关的概念,可以解释一些观察到的解链热力学性质的变化。结果表明,碱基对解链时存在强烈的熵 - 焓补偿,但熵的增加占主导地位,导致随着共溶剂浓度增加稳定性降低。评估了过量水合参数,并根据共溶剂与DNA碱基对相互作用的变化讨论了其大小。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验