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生物多胺与不同碱基组成的脱氧核糖核酸的结合:碱基特异性及相互作用的相关能量学。

Binding of the biogenic polyamines to deoxyribonucleic acids of varying base composition: base specificity and the associated energetics of the interaction.

机构信息

Biophysical Chemistry Laboratory, Chemistry Division, CSIR-Indian Institute of Chemical Biology, Kolkata, India.

出版信息

PLoS One. 2013 Jul 24;8(7):e70510. doi: 10.1371/journal.pone.0070510. Print 2013.

Abstract

BACKGROUND

The thermodynamics of the base pair specificity of the binding of the polyamines spermine, spermidine, putrescine, and cadaverine with three genomic DNAs Clostridium perfringens, 27% GC, Escherichia coli, 50% GC and Micrococcus lysodeikticus, 72% GC have been studied using titration calorimetry and the data supplemented with melting studies, ethidium displacement and circular dichroism spectroscopy results.

METHODOLOGY/PRINCIPAL FINDINGS: Isothermal titration calorimetry, differential scanning calorimetry, optical melting studies, ethidium displacement, circular dichroism spectroscopy are the various techniques employed to characterize the interaction of four polyamines, spermine, spermidine, putersine and cadaverine with the DNAs. Polyamines bound stronger with AT rich DNA compared to the GC rich DNA and the binding varied depending on the charge on the polyamine as spermine>spermidine >putrescine>cadaverine. Thermodynamics of the interaction revealed that the binding was entropy driven with small enthalpy contribution. The binding was influenced by salt concentration suggesting the contribution from electrostatic forces to the Gibbs energy of binding to be the dominant contributor. Each system studied exhibited enthalpy-entropy compensation. The negative heat capacity changes suggested a role for hydrophobic interactions which may arise due to the non polar interactions between DNA and polyamines.

CONCLUSION/SIGNIFICANCE: From a thermodynamic analysis, the AT base specificity of polyamines to DNAs has been elucidated for the first time and supplemented by structural studies.

摘要

背景

使用滴定量热法和补充的融解研究、溴化乙锭置换和圆二色性光谱学结果,研究了多胺精胺、亚精胺、腐胺和尸胺与三种基因组 DNA 的结合的碱基对特异性的热力学。

方法/主要发现:等温滴定量热法、差示扫描量热法、光学融解研究、溴化乙锭置换、圆二色性光谱学是用于表征四种多胺(精胺、亚精胺、腐胺和尸胺)与 DNA 相互作用的各种技术。与富含 GC 的 DNA 相比,多胺与富含 AT 的 DNA 结合更强,并且结合取决于多胺的电荷,即精胺>亚精胺>腐胺>尸胺。相互作用的热力学表明,结合是熵驱动的,焓贡献较小。结合受盐浓度的影响,表明来自静电相互作用的 Gibbs 结合能对结合的贡献是主要贡献者。研究的每个系统都表现出焓熵补偿。负热容变化表明存在疏水相互作用,这可能是由于 DNA 和多胺之间的非极性相互作用引起的。

结论/意义:从热力学分析来看,首次阐明了多胺对 DNA 的 AT 碱基特异性,并通过结构研究得到了补充。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d3c/3722294/630f54861379/pone.0070510.g001.jpg

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