Leng F, Priebe W, Chaires J B
Department of Biochemistry, University of Mississippi Medical Center, Jackson 39216-4505, USA.
Biochemistry. 1998 Feb 17;37(7):1743-53. doi: 10.1021/bi9720742.
Differential scanning calorimetry and absorption spectroscopy were used to characterize the interaction of the new bisintercalating anthracycline antibiotic, WP631, with DNA. The method of continuous variations revealed five distinct binding modes for WP631, corresponding to 6, 3, 1.3, 0.5, and 0.25 mol of base pairs (bp) per mole of ligand. The binding of one drug to 6 bp corresponds to the bisintercalative binding mode determined previously, and was the mode studied in detail. UV melting experiments and differential scanning calorimetry were used to measure the ultratight binding of WP631 to DNA. The binding constant for the interaction of WP631 with herring sperm DNA was determined to be 3.1 (+/- 0.2) x 10(11) M-1 at 20 degrees C. The large, favorable binding free energy of -15.3 kcal mol-1 was found to result from a large, negative enthalpic contribution of -30.2 kcal mol-1. DNA melting curves at different concentrations of WP631 were fitted to McGhee's model of DNA melting in the presence of ligands, yielding an independent estimate of DNA binding parameters. The salt dependence of the WP631 binding constant was examined, yielding a slope SK = delta (log K)/delta (log[Na+]) = 1.63. The observed salt dependence of the equilibrium constant, interpreted according to polyelectrolyte theory, indicates that there is a significant nonpolyelectrolyte contribution to the binding free energy. DNA melting studies using a homogeneous 214 bp DNA fragment showed that WP631 binds preferentially to the GC-rich region of the DNA.
采用差示扫描量热法和吸收光谱法对新型双嵌入蒽环类抗生素WP631与DNA的相互作用进行表征。连续变量法揭示了WP631的五种不同结合模式,分别对应于每摩尔配体结合6、3、1.3、0.5和0.25摩尔碱基对(bp)。一种药物与6 bp的结合对应于先前确定的双嵌入结合模式,也是详细研究的模式。利用紫外熔解实验和差示扫描量热法测量WP631与DNA的超紧密结合。在20℃下,WP631与鲱鱼精DNA相互作用的结合常数测定为3.1(±0.2)×10¹¹ M⁻¹。发现-15.3 kcal mol⁻¹的巨大且有利的结合自由能是由-30.2 kcal mol⁻¹的巨大负焓贡献导致的。将不同浓度WP631下的DNA熔解曲线拟合到麦吉在配体存在下的DNA熔解模型,得到了DNA结合参数的独立估计值。研究了WP631结合常数的盐依赖性,得出斜率SK = δ(log K)/δ(log[Na⁺]) = 1.63。根据聚电解质理论对观察到的平衡常数的盐依赖性进行解释,表明结合自由能存在显著的非聚电解质贡献。使用均匀的214 bp DNA片段进行的DNA熔解研究表明,WP631优先结合于DNA的富含GC区域。