Tarui M, Doi M, Ishida T, Inoue M, Nakaike S, Kitamura K
Department of Physical Chemistry, Osaka University of Pharmaceutical Sciences, Japan.
Biochem J. 1994 Nov 15;304 ( Pt 1)(Pt 1):271-9. doi: 10.1042/bj3040271.
NC-182 is a novel anti-tumour compound having a benzo[a]phenazine ring. Fluorescence, absorption and c.d. spectroscopy, as well as viscometric titrations, were systematically performed to investigate the interaction mode of this drug with DNA and its effect on DNA conformation, based on comparative measurements with distamycin (DNA minor-groove binder) and daunomycin (DNA-base intercalator). NC-182 was found to be a potent intercalator of DNA, especially the B-form DNA, although no specificity was observed against the base-pair. The binding of NC-182 to B-DNA behaves biphasically, depending on the molar ratio (r) of drug to DNA: NC-182 acts to render the B-form structure rigid at relatively low r value and to promote the transformation of B- to non-B forms at high r values. It was also shown that NC-182 promotes the unwinding of Z-form DNA to B-form. Viscometric, u.v. 'melting' and c.d. experiments further showed that (1) the DNA duplex structure is thermally stabilized by intercalation with NC-182 and (2) the intercalation of NC-182 into a poly(dA).2poly(dT) DNA structure thermally stabilizes the triplex structure, resulting in a melting point close to that of the duplex structure; the melting curves of triplex and duplex structures coincide at r > 0.06. These observations make a significant contribution to our understanding of the biological properties of this novel benzo[a]phenazine derivative, a new anti-tumour tumour agent against multidrug-resistant and sensitive tumours.
NC - 182是一种具有苯并[a]吩嗪环的新型抗肿瘤化合物。基于与偏端霉素(DNA小沟结合剂)和柔红霉素(DNA碱基嵌入剂)的对比测量,系统地进行了荧光、吸收和圆二色光谱分析以及粘度滴定,以研究该药物与DNA的相互作用模式及其对DNA构象的影响。结果发现NC - 182是一种有效的DNA嵌入剂,尤其是对B型DNA,尽管未观察到对碱基对的特异性。NC - 182与B - DNA的结合表现为双相性,这取决于药物与DNA的摩尔比(r):在相对较低的r值时,NC - 182使B型结构变得刚性,而在高r值时促进B型向非B型的转变。还表明NC - 182促进Z型DNA向B型的解旋。粘度、紫外“熔解”和圆二色实验进一步表明:(1)通过与NC - 182嵌入,DNA双链结构在热稳定性上得到增强;(2)NC - 182嵌入聚(dA)·2聚(dT)DNA结构中,使三链结构在热稳定性上得到增强,导致熔点接近双链结构的熔点;在r > 0.06时,三链和双链结构的熔解曲线重合。这些观察结果对于我们理解这种新型苯并[a]吩嗪衍生物(一种针对多药耐药和敏感肿瘤的新型抗肿瘤药物)的生物学特性具有重要意义。