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保护渗透剂对 DNA 双螺旋周围离子环境的影响。

Effects of a protecting osmolyte on the ion atmosphere surrounding DNA duplexes.

机构信息

School of Applied and Engineering Physics, Cornell University, Ithaca, New York 14853, United States.

出版信息

Biochemistry. 2011 Oct 11;50(40):8540-7. doi: 10.1021/bi200710m. Epub 2011 Sep 15.

Abstract

Osmolytes are small, chemically diverse, organic solutes that function as an essential component of cellular stress response. Protecting osmolytes enhance protein stability via preferential exclusion, and nonprotecting osmolytes, such as urea, destabilize protein structures. Although much is known about osmolyte effects on proteins, less is understood about osmolyte effects on nucleic acids and their counterion atmospheres. Nonprotecting osmolytes destabilize nucleic acid structures, but effects of protecting osmolytes depend on numerous factors including the type of nucleic acid and the complexity of the functional fold. To begin quantifying protecting osmolyte effects on nucleic acid interactions, we used small-angle X-ray scattering (SAXS) techniques to monitor DNA duplexes in the presence of sucrose. This protecting osmolyte is a commonly used contrast matching agent in SAXS studies of protein-nucleic acid complexes; thus, it is important to characterize interaction changes induced by sucrose. Measurements of interactions between duplexes showed no dependence on the presence of up to 30% sucrose, except under high Mg(2+) conditions where stacking interactions were disfavored. The number of excess ions associated with DNA duplexes, reported by anomalous small-angle X-ray scattering (ASAXS) experiments, was sucrose independent. Although protecting osmolytes can destabilize secondary structures, our results suggest that ion atmospheres of individual duplexes remain unperturbed by sucrose.

摘要

渗透剂是小分子、化学性质多样的有机溶质,是细胞应激反应的重要组成部分。保护渗透剂通过优先排斥来增强蛋白质稳定性,而非保护渗透剂(如尿素)则会使蛋白质结构不稳定。尽管人们对渗透剂对蛋白质的影响有了很多了解,但对渗透剂对核酸及其反离子气氛的影响了解较少。非保护渗透剂会使核酸结构不稳定,但保护渗透剂的影响取决于许多因素,包括核酸的类型和功能折叠的复杂性。为了开始定量研究保护渗透剂对核酸相互作用的影响,我们使用小角度 X 射线散射(SAXS)技术在蔗糖存在的情况下监测 DNA 双链体。这种保护渗透剂是 SAXS 研究蛋白质-核酸复合物中常用的对比度匹配剂;因此,表征蔗糖引起的相互作用变化很重要。双链体之间相互作用的测量结果表明,在存在高达 30%的蔗糖的情况下没有依赖性,除了在高 Mg2+条件下,堆积相互作用不受青睐。异常小角 X 射线散射(ASAXS)实验报告的与 DNA 双链体相关的多余离子数量与蔗糖无关。尽管保护渗透剂可以使二级结构不稳定,但我们的结果表明,单个双链体的离子气氛不受蔗糖的影响。

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