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与DNA相互作用的抗癌氮杂蒽并吡唑类化合物:与作用机制相关的生物物理和生物化学研究

DNA-interactive anticancer aza-anthrapyrazoles: biophysical and biochemical studies relevant to the mechanism of action.

作者信息

Sissi C, Moro S, Richter S, Gatto B, Menta E, Spinelli S, Krapcho A P, Zunino F, Palumbo M

机构信息

Department of Pharmaceutical Sciences, University of Padova, Padova, Italy.

出版信息

Mol Pharmacol. 2001 Jan;59(1):96-103. doi: 10.1124/mol.59.1.96.

Abstract

The physicochemical and DNA-binding properties of anticancer 9-aza-anthrapyrazoles (9-aza-APs) were investigated and compared with the carbocyclic analogs losoxantrone (LX) and mitoxantrone (MX). Unlike their carbocyclic counterparts, the tested 9-aza-APs do not undergo self-aggregation phenomena. The pyridine nitrogen at position 9, missing in the carbocyclic derivatives, is involved in protonation equilibria at physiological pH. In addition, 9-aza-APs are electrochemically reduced at a potential intermediate between LX and MX. These data fully agree with quantum mechanical calculations. Binding to nucleic acids was examined by spectroscopic, chiroptical, and DNase I footprinting techniques as a function of ionic strength and base composition. The 9-aza-APs exhibit prominent affinity for DNA, with an important electrostatic contribution to the binding free energy. A very remarkable sequence preference pattern dramatically favors GC steps in double-helical DNA, whereas the carbocyclic reference compounds show a substantially lower selectivity for GC. A common DNA complexation geometry, considerably differing from that of MX, characterizes all anthrapyrazoles. Hence, bioisosteric substitution and ring-hydroxy deletion play an important role in defining the physicochemical properties and in modulating the affinity of anthrapyrazoles for the nucleic acid, the geometry of the intercalation complex, and the sequence specific contacts along the DNA chain. Drug stimulation of topoisomerase II-mediated DNA cleavage is remarkably attenuated in the aza-bioisosteric derivatives, suggesting that other non-enzyme-mediated cytotoxic mechanism(s), possibly connected with free radical production, are responsible for efficient cell killing. The biophysical and biochemical properties exhibited by 9-aza-APs contribute to clarifying the peculiar pharmacological profile of this family of compounds.

摘要

研究了抗癌9-氮杂蒽并吡唑(9-aza-APs)的物理化学和DNA结合特性,并与碳环类似物洛索蒽醌(LX)和米托蒽醌(MX)进行了比较。与它们的碳环类似物不同,所测试的9-aza-APs不会发生自聚集现象。碳环衍生物中缺失的9位吡啶氮参与了生理pH下的质子化平衡。此外,9-aza-APs在LX和MX之间的电位下被电化学还原。这些数据与量子力学计算完全一致。通过光谱、旋光光谱和DNase I足迹技术研究了与核酸的结合,作为离子强度和碱基组成的函数。9-aza-APs对DNA表现出显著的亲和力,对结合自由能有重要的静电贡献。一种非常显著的序列偏好模式极大地有利于双螺旋DNA中的GC步,而碳环参考化合物对GC的选择性则低得多。所有蒽并吡唑都具有一种与MX明显不同的常见DNA络合几何结构。因此,生物电子等排取代和环羟基缺失在定义物理化学性质以及调节蒽并吡唑对核酸的亲和力、插入复合物的几何结构和沿DNA链序列特异性接触方面起着重要作用。在氮杂生物电子等排衍生物中,拓扑异构酶II介导的DNA切割的药物刺激明显减弱,这表明可能与自由基产生有关的其他非酶介导的细胞毒性机制负责有效的细胞杀伤。9-aza-APs表现出的生物物理和生化特性有助于阐明该类化合物独特的药理学特征。

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