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拓扑异构酶抑制剂6-芳基氨基-7-氯喹唑啉-5,8-二酮在人拓扑异构酶I与DNA的可裂解复合物中的结合模式分析

Binding mode analysis of topoisomerase inhibitors, 6-arylamino-7-chloro-quinazoline-5,8-diones, within the cleavable complex of human topoisomerase I and DNA.

作者信息

Choi Inhee, Kim Choonmi, Choi Sun

机构信息

College of Pharmacy, Ewha Womans University, Seoul 120-750, Korea.

出版信息

Arch Pharm Res. 2007 Dec;30(12):1526-35. doi: 10.1007/BF02977321.

Abstract

A series of 6-arylamino-7-chloro-quinazoline-5,8-diones have been evaluated as novel human topoisomerase I (TOP1) inhibitors based on the antitumor activity of 1,4-naphthoquinone. Besides their in vitro cytotoxicity, their ability to inhibit human TOP1-DNA in vitro was tested with human TOP1 and a supercoiled (Form I) plasmid substrate DNA (Park et al., 2004). Using the flexible docking program, QXP, we have developed ternary complex models by docking camptothecin and ten 6-arylamino-7-chloro-quinazoline-5,8-dione analogs into the X-ray crystal structure of the human TOP1-DNA binary complex. The compound binding modes substantiated their potential inhibitory activities against TOP1 in the relaxation assay. Compounds whose templates the 6-arylamino-7-chloro-quinazoline-5,8-dione moiety intercalated between the -1 and +1 base pairs of the scissile strand showed good inhibitory activities. The template of compounds with poor inhibitory activities intercalated between the DNA base pairs of the nonscissile strand. The interaction of the compounds and the human TOP1-DNA binary complex were stabilized by an array of hydrogen bonds and hydrophobic interactions with the TOP1 residues, DNA bases, and water molecules. Docking results from the QXP program suggested potential binding modes of each non-CPT type compound in the human TOP1-DNA cleavable complex, which could provide a rational basis for future TOP1 inhibitor development.

摘要

基于1,4-萘醌的抗肿瘤活性,一系列6-芳氨基-7-氯喹唑啉-5,8-二酮已被评估为新型人类拓扑异构酶I(TOP1)抑制剂。除了它们的体外细胞毒性外,还用人TOP1和超螺旋(Form I)质粒底物DNA测试了它们在体外抑制人TOP1-DNA的能力(Park等人,2004年)。使用灵活对接程序QXP,我们通过将喜树碱和十个6-芳氨基-7-氯喹唑啉-5,8-二酮类似物对接至人TOP1-DNA二元复合物的X射线晶体结构中,开发了三元复合物模型。化合物的结合模式证实了它们在松弛试验中对TOP1的潜在抑制活性。其模板为6-芳氨基-7-氯喹唑啉-5,8-二酮部分插入可裂解链的-1和+1碱基对之间的化合物显示出良好的抑制活性。抑制活性较差的化合物模板插入非可裂解链的DNA碱基对之间。化合物与人TOP1-DNA二元复合物的相互作用通过与TOP1残基、DNA碱基和水分子的一系列氢键和疏水相互作用得以稳定。QXP程序的对接结果表明了每种非CPT类型化合物在人TOP1-DNA可裂解复合物中的潜在结合模式,这可为未来TOP1抑制剂的开发提供合理依据。

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