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A gel electrophoresis study of the competitive effects of monovalent counterion on the extent of divalent counterions binding to DNA.

机译:凝胶电泳研究单价抗衡离子对二价抗衡离子与DNA结合程度的竞争作用。

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摘要

The behavior of alkaline earth metal cations (Mg2+ and Ca2+) and transition metal cations (Zn2+ and Cu2+) interacting with lambda-DNA-HindIII fragments ranging from 2,027 to 23,130 bp in Tris-borate-EDTA buffer solutions was investigated. The divalent counterions competed with Tris+ and Na+ for binding to polyion DNA, and the competition binding situations were investigated by measuring the reduction of the DNA mobility, by pulsed- or constant-field gel electrophoresis. The interaction of Mg2+ with DNA was intensively studied over a wide range of Mg2+ concentrations. In addition, we examined the competition binding as a function of ionic strength and DNA size. To compare valence effects, we studied Co(NH3)6(3+) interaction with DNA fragments under conditions similar to that of Mg2+. At relatively low Mg2+ concentration, the normalized titration curves of DNA mobility were well fit by Manning's two-variable counterion condensation (CC) theory. The agreement between the predicted value (total charge neutralization fraction theta) from Manning's CC theory and the data based on our measured DNA electrophoretic mobility reduction was consistent under our experimental conditions. In contrast to alkaline earth metal cations (Mg2+ and Ca2+), different binding behaviors were observed for the transition metal cations (Zn2+ and Cu2+). These differences highlight the usefulness of our reduced DNA electrophoretic mobility measurement approach to describing cation interactions with polyelectrolyte DNA.
机译:研究了在Tris-硼酸盐-EDTA缓冲溶液中,碱土金属阳离子(Mg2 +和Ca2 +)和过渡金属阳离子(Zn2 +和Cu2 +)与lambda-DNA-HindIII片段的相互作用范围为2,027至23,130 bp。二价抗衡离子与Tris +和Na +竞争与聚离子DNA的结合,并通过脉冲或恒定场凝胶电泳测量DNA迁移率的降低来研究竞争结合情况。在广泛的Mg2 +浓度范围内,对Mg2 +与DNA的相互作用进行了深入研究。此外,我们检查了竞争结合随离子强度和DNA大小的变化。为了比较化合价效应,我们研究了在类似于Mg2 +的条件下Co(NH3)6(3+)与DNA片段的相互作用。在相对较低的Mg2 +浓度下,DNA迁移率的标准化滴定曲线通过曼宁的两变量抗衡离子缩合(CC)理论很好地拟合。在我们的实验条件下,Manning CC理论的预测值(总电荷中和分数theta)与基于我们测得的DNA电泳迁移率降低的数据之间的一致性是一致的。与碱土金属阳离子(Mg2 +和Ca2 +)相反,过渡金属阳离子(Zn2 +和Cu2 +)的结合行为不同。这些差异突出了我们减少的DNA电泳迁移率测量方法对描述阳离子与聚电解质DNA相互作用的有用性。

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