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钴胺化合物对DNA凝聚的结构效应。

Structural effects of cobalt-amine compounds on DNA condensation.

作者信息

Deng H, Bloomfield V A

机构信息

Department of Biochemistry, Molecular Biology, and Biophysics, University of Minnesota, St. Paul, Minnesota 55108 USA.

出版信息

Biophys J. 1999 Sep;77(3):1556-61. doi: 10.1016/S0006-3495(99)77003-7.

Abstract

Light scattering and electron microscopy have been used to investigate the structural effects of the trivalent complexes hexaammine cobalt (III) chloride (Cohex), tris(ethylenediamine) cobalt(III) chloride (Coen), and cobalt(III) sepulchrate chloride (Cosep) on DNA condensation. These cobalt-amine compounds have similar ligand coordination geometries but differ slightly in size. Their hydrophobicity is in the order Cosep > Coen > Cohex, according to the numbers of methylene groups in these ligands. All of these compounds effectively precipitate DNA at high concentrations; but despite a lower surface charge density, Cosep condenses DNA twice as effectively as Coen or Cohex. UV and CD measurements of the supernatants of cobalt-amine/DNA solutions reveal a preferential binding of Delta-Coen over Lambda-Coen to the precipitated DNA, but there is no chiral selectivity for Cosep. Competition experiments show that the binding strengths of these three cobalt-amine compounds to aggregated DNA are comparable. A charge neutralization of 88-90% is required for DNA condensation. Our data indicate that 1) electrostatic interaction is the main driving force for binding of multivalent cations to DNA; 2) DNA condensation is dependent on the structure of the condensing agent; and 3) the hydration pattern or polarization of water molecules on the surface of condensing agents plays an important role in DNA condensation and chiral recognition.

摘要

光散射和电子显微镜已被用于研究三价配合物六氨合钴(III)氯化物(Cohex)、三(乙二胺)钴(III)氯化物(Coen)和氯化钴(III)笼形物(Cosep)对DNA凝聚的结构效应。这些钴-胺化合物具有相似的配体配位几何结构,但尺寸略有不同。根据这些配体中亚甲基的数量,它们的疏水性顺序为Cosep > Coen > Cohex。所有这些化合物在高浓度下都能有效地沉淀DNA;但尽管表面电荷密度较低,Cosep凝聚DNA的效率却是Coen或Cohex的两倍。对钴-胺/DNA溶液上清液的紫外和圆二色测量表明,δ-Coen比λ-Coen更优先地与沉淀的DNA结合,但Cosep没有手性选择性。竞争实验表明,这三种钴-胺化合物与聚集DNA的结合强度相当。DNA凝聚需要88-90%的电荷中和。我们的数据表明:1)静电相互作用是多价阳离子与DNA结合的主要驱动力;2)DNA凝聚取决于凝聚剂的结构;3)凝聚剂表面水分子的水合模式或极化在DNA凝聚和手性识别中起重要作用。

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