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[精胺对DNA分子酸碱平衡的影响]

[The effect of spermine on acid-base equilibrium in DNA molecule].

作者信息

Slonitskiĭ S V, Kuptsov V Iu

出版信息

Mol Biol (Mosk). 1990 Mar-Apr;24(2):334-45.

PMID:2362585
Abstract

The influence of spermine (Sp) on the acid-induced predenaturational and denaturational transitions in the DNA molecule structure has been studied by means of circular dichroism, spectrophotometric and viscometric titration at supporting electrolyte concentration 10 mM NaCl. The data available indicate that at [N]/[P] less than or equal to 0.60 (here [N] and [P] are molar concentrations of Sp nitrogen and DNA phosphours, respectively) the cooperative structural B----B(+)----S transitions are accompanied by the DNA double-helice winding. No competition for proton acceptor sites in the DNA molecule between H+ and Sp4+ cations has been observed when binding to neutral macromolecule. At 0.60 less than or equal to [N]/[P] less than or equal to 0.75 the displacement of the B----B(+)----S transitions midpoints to acidic pH region has been established. This is accompanied by DNA condensation and the appearance of differential scattering of circularly polarized light. The calculations carried out in the framework of the two-variable Manning theory have shown that the acid-induced reduction of the effective polyion charge density facilitates the Sp-induced DNA condensation. It has been shown that the acid-base equilibrium in the DNA molecule is determined by local [H+] in the 2-3 A hydrated monolayer of the macromolecule. An adequate estimation of [H+] can be obtained on the basis of the Poisson-Boltzman approach. The data obtained are consistent with recently proposed hypothesis of polyelectrolyte invariance of the acid-base equilibrium in the DNA molecule.

摘要

在支持电解质浓度为10 mM NaCl的条件下,通过圆二色性、分光光度法和粘度滴定法研究了精胺(Sp)对DNA分子结构中酸诱导的预变性和变性转变的影响。现有数据表明,当[N]/[P]小于或等于0.60时(此处[N]和[P]分别为Sp氮和DNA磷的摩尔浓度),协同结构B----B(+)----S转变伴随着DNA双螺旋的缠绕。当与中性大分子结合时,未观察到H+和Sp4+阳离子在DNA分子中对质子受体位点的竞争。当0.60小于或等于[N]/[P]小于或等于0.75时,已确定B----B(+)----S转变中点向酸性pH区域移动。这伴随着DNA凝聚和圆偏振光的差分散射的出现。在双变量曼宁理论框架内进行的计算表明,酸诱导的有效聚离子电荷密度降低促进了Sp诱导的DNA凝聚。结果表明,DNA分子中的酸碱平衡由大分子2-3 Å水合单层中的局部[H+]决定。基于泊松-玻尔兹曼方法可以获得[H+]的适当估计值。所获得的数据与最近提出的DNA分子中酸碱平衡的聚电解质不变性假说一致。

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