McFadyen W D, Wakelin L P, Roos I A, Hillcoat B L
Biochem J. 1987 Feb 15;242(1):177-83. doi: 10.1042/bj2420177.
The binding of platinum (II)-terpyridine complexes to DNA was studied by using equilibrium dialysis. Optical absorption methods were used to measure the ability of the ligands to aggregate in aqueous buffer. Scatchard plots for the binding of the monomeric [Pt(terpy)SC4H9]+ cation to DNA at I0.01 are curvilinear, concave upwards, suggesting two modes of binding. The association constant decreases at higher ionic strengths, consistent with polyelectrolyte theory, and 1.1 cations are released per bound ligand molecule. The association constants of the binuclear ligands [Pt(terpy)S[CH2]4S(terpy)Pt]2+ and [Pt(terpy)S[CH2]6S(terpy)Pt]2+ are 8 and 23 times larger respectively than the affinity of the monomer. For the latter binuclear derivative the increase may be ascribed to bifunctional reaction. Differential dialysis experiments with DNAs of differing base composition show that [Pt(terpy)SC4H9]+ has a requirement for a single G X C base-pair at the highest-affinity site. However, in the binuclear ligands chromophore specificity is severely compromised. Similar experiments indicate that 9-aminoacridine and selected methylene-linked diacridines show no significant sequence selectivity.
采用平衡透析法研究了铂(II)-三联吡啶配合物与DNA的结合。利用光吸收法测定配体在水性缓冲液中的聚集能力。在离子强度I = 0.01时,单体[Pt(terpy)SC4H9]+阳离子与DNA结合的Scatchard图呈曲线状,向上凹,表明存在两种结合模式。随着离子强度的增加,缔合常数降低,这与聚电解质理论一致,且每结合一个配体分子会释放1.1个阳离子。双核配体[Pt(terpy)S[CH2]4S(terpy)Pt]2+和[Pt(terpy)S[CH2]6S(terpy)Pt]2+的缔合常数分别比单体的亲和力大8倍和23倍。对于后一种双核衍生物,这种增加可能归因于双功能反应。对不同碱基组成的DNA进行的差分透析实验表明,[Pt(terpy)SC4H9]+在最高亲和力位点需要一个单一的G×C碱基对。然而,在双核配体中,发色团特异性严重受损。类似的实验表明,9-氨基吖啶和选定的亚甲基连接的二吖啶没有明显的序列选择性。