首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Large electrostatic differences in the binding thermodynamics of a cationic peptide to oligomeric and polymeric DNA.
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Large electrostatic differences in the binding thermodynamics of a cationic peptide to oligomeric and polymeric DNA.

机译:阳离子肽与寡聚和聚合DNA结合热力学的静电差异很大。

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摘要

Results presented here demonstrate that the thermodynamics of oligocation binding to polymeric and oligomeric DNA are not equivalent because of long-range electrostatic effects. At physiological cation concentrations (0.1-0.3 M) the binding of an oligolysine octacation KWK6-NH2 (+8 charge) to single-stranded poly(dT) is much stronger per site and significantly more salt concentration dependent than the binding of the same ligand to an oligonucleotide, dT(pdT)10 (-10 charge). These large differences are consistent with Poisson-Boltzmann calculations for a model that characterizes the charge distributions with key preaveraged structural parameters. Therefore, both the experimental and the theoretical results presented here show that the polyelectrolyte character of a polymeric nucleic acid makes a large contribution to both the magnitude and the salt concentration dependence of its binding interactions with simple oligocationic ligands.
机译:此处给出的结果表明,由于远距离静电效应,寡聚与聚合物和寡聚DNA结合的热力学并不相同。在生理阳离子浓度(0.1-0.3 M)下,每个位点寡聚赖氨酸辛酸KWK6-NH2(+8电荷)与单链聚(dT)的结合要强得多,并且与相同配体的结合相比,盐浓度的依赖性更大寡核苷酸dT(pdT)10(-10电荷)。这些大的差异与Poisson-Boltzmann模型的计算结果一致,该模型使用关键的预平均结构参数表征了电荷分布。因此,此处给出的实验结果和理论结果均表明,聚合核酸的聚电解质特性对其与简单的寡阳离子配体的结合相互作用的大小和盐浓度依赖性都做出了很大贡献。

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