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苊并[1,2 - b]吡咯衍生物作为一类新型嵌入剂:多样的DNA结合几何结构及有趣的抗肿瘤能力。

Acenaphtho[1,2-b]pyrrole derivatives as new family of intercalators: various DNA binding geometry and interesting antitumor capacity.

作者信息

Zhang Zhichao, Yang Yuanyuan, Zhang Danni, Wang Yuanyuan, Qian Xuhong, Liu Fengyu

机构信息

State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian 116012, China.

出版信息

Bioorg Med Chem. 2006 Oct 15;14(20):6962-70. doi: 10.1016/j.bmc.2006.06.029. Epub 2006 Jul 7.

Abstract

A series of acenaphtho[1,2-b]pyrrole derivatives were synthesized and their intercalation geometries with DNA and antitumor activities were investigated in detail. From combination of SYBR Green-DNA melt curve, fluorescence titration, absorption titration, and circular dichroism (CD) studies, it was identified that to different extent, all the compounds behaved as DNA intercalators and transformed B form DNA to A-like conformation. The different intercalation modes for the compounds were revealed. The compounds containing a methylpiperazine substitution (series I) intercalated in a fashion that the long axis of the molecule paralleled to the base-pair long axis, while the alkylamine- substituted compounds (series II and III) located vertically to the long axis of DNA base pairs. Consequently, the DNA binding affinity of these compounds was obtained with the order of II>III>I, which attributed to the role of the substitution in binding geometry. Further, cell-based studies showed all the compounds exhibited outstanding antitumor activities against two human tumor cell lines with IC(50) ranging from 10(-7) to 10(-6)M. Interestingly, compound (1)a (a compound in series I), whose binding affinity was one of the lowest but altered DNA conformation most significantly, showed much lower IC(50) value than other compounds. Moreover, it could induce tumor cells apoptosis, while the compounds (2)a and (3)a (in series II and III, respectively) could only necrotize tumor cells. Their different mechanism of killing tumor cells might lie in their different DNA binding geometry. It could be concluded that the geometry of intercalator-DNA complex contributed much more to the antitumor property than binding affinity.

摘要

合成了一系列苊并[1,2 - b]吡咯衍生物,并详细研究了它们与DNA的插入几何结构和抗肿瘤活性。通过结合SYBR Green - DNA熔解曲线、荧光滴定、吸收滴定和圆二色性(CD)研究发现,所有化合物在不同程度上均表现为DNA插入剂,并将B型DNA转变为类似A型的构象。揭示了这些化合物不同的插入模式。含甲基哌嗪取代基的化合物(系列I)以分子长轴与碱基对长轴平行的方式插入,而烷基胺取代的化合物(系列II和III)则垂直于DNA碱基对的长轴定位。因此,这些化合物与DNA的结合亲和力顺序为II>III>I,这归因于取代基在结合几何结构中的作用。此外,基于细胞的研究表明,所有化合物对两种人类肿瘤细胞系均表现出优异的抗肿瘤活性,IC(50)范围为10(-7)至10(-6)M。有趣的是,化合物(1)a(系列I中的一种化合物),其结合亲和力是最低的之一,但对DNA构象的改变最为显著,其IC(50)值比其他化合物低得多。此外,它能诱导肿瘤细胞凋亡,而化合物(2)a和(3)a(分别在系列II和III中)只能使肿瘤细胞坏死。它们杀死肿瘤细胞的不同机制可能在于其不同的DNA结合几何结构。可以得出结论,插入剂 - DNA复合物的几何结构对抗肿瘤特性的贡献比结合亲和力大得多。

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