McFadyen W D, Sotirellis N, Denny W A, Wakelin L P
Centre for Chemistry and Physics, School of Science of Mathematics Education, University of Melbourne, Parkville, Australia.
Biochim Biophys Acta. 1990 Jan 30;1048(1):50-8. doi: 10.1016/0167-4781(90)90021-s.
Viscometric measurements with circular and sonicated rodlike DNA fragments were used to explore whether ring substituents or conformationally restricted linkers promote bifunctional intercalation amongst a series of binuclear 4-aminoquinolines bridged via their 4-amino group. We find that ligands comprising unsubstituted quinolines and piperazine or pyrazole linkages bisintercalate. Quinoline-substituted alkyl-linked dimers intercalate in either a mixed monofunctional-bifunctional mode or bind with only one of their chromophores intercalated depending on the nature of the substituents. Equilibrium dialysis measurements show that the binding affinity for calf thymus DNA of the compounds studied ranges from (1.2-12) . 10(4) M-1 in buffer of ionic strength 0.1. Both co-operative and antico-operative binding isotherms were obtained and there is evidence for a second binding mode for the piperazine-linked diquinoline at saturating binding levels. For this compound the high-affinity association constant decreases with increasing ionic strength, 3.4 cations being released per bound ligand molecule. Partition dialysis measurements with DNAs of differing base composition indicate that the compounds studied are either AT selective or sequence neutral depending on ligand structure. For example, the pyrazole linker imparts a marked specificity for binding to AT-rich DNA, whereas the piperazine linker does not. Kinetic measurements using the surfactant-sequestration method reveal that DNA-diquinoline complexes dissociate very rapidly by complex mechanisms with rate constants greater than 100 s-1 in buffer of ionic strength 0.1.
使用环状和超声处理的棒状DNA片段进行粘度测量,以探究环取代基或构象受限的连接基是否能促进一系列通过其4-氨基桥连的双核4-氨基喹啉之间的双功能嵌入。我们发现,包含未取代喹啉以及哌嗪或吡唑连接基的配体可进行双嵌入。喹啉取代的烷基连接二聚体根据取代基的性质以混合单功能 - 双功能模式嵌入,或仅其一个发色团嵌入。平衡透析测量表明,在所研究的化合物中,在离子强度为0.1的缓冲液中,对小牛胸腺DNA的结合亲和力范围为(1.2 - 12)·10⁴ M⁻¹。获得了协同和反协同结合等温线,并且有证据表明在饱和结合水平下,哌嗪连接的二喹啉存在第二种结合模式。对于该化合物,高亲和力缔合常数随离子强度增加而降低,每个结合的配体分子释放3.4个阳离子。对不同碱基组成的DNA进行分配透析测量表明,所研究化合物根据配体结构要么对AT具有选择性,要么对序列无选择性。例如,吡唑连接基赋予与富含AT的DNA结合显著的特异性,而哌嗪连接基则不然。使用表面活性剂螯合方法进行的动力学测量表明,在离子强度为0.1的缓冲液中,DNA - 二喹啉复合物通过复杂机制非常快速地解离,速率常数大于100 s⁻¹。