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由吡咯-咪唑 S-CBI 共轭物进行的对映选择性 DNA 烷基化作用。

Enantioselective DNA alkylation by a pyrrole-imidazole S-CBI conjugate.

作者信息

Bando Toshikazu, Narita Akihiko, Asada Ken, Ayame Hirohito, Sugiyama Hiroshi

机构信息

Department of Chemistry, Graduate School of Science, Kyoto University, Sakyo, Kyoto 606-8501, Japan.

出版信息

J Am Chem Soc. 2004 Jul 28;126(29):8948-55. doi: 10.1021/ja049398f.

Abstract

Conjugates 12S and 12R of N-methylpyrrole (Py)-N-methylimidazole (Im) seven-ringed hairpin polyamide with both enantiomers of 1,2,9,9a-tetrahydrocyclopropa[1,2-c]benz[1,2-e]indol-4-one (CBI) were synthesized, and their DNA alkylating activity was examined. High-resolution denaturing gel electrophoresis revealed that 12S selectively and efficiently alkylated at one match sequence, 5'-TGACCA-3', in 450-bp DNA fragments. The selectivity and efficiency of the DNA alkylation by 12S were higher than those of the corresponding cyclopropapyrroloindole (CPI) conjugate, 11. In sharp contrast, another enantiomer, 12R, showed very weak DNA alkylating activity. Product analysis of the synthetic decanucleotide confirmed that the alkylating activity of 12S was comparable with 11 and that 12S had a significantly higher reactivity than 12R. The enantioselective reactivity of 12S and 12R is assumed to be due to the location of the alkylating cyclopropane ring of the CBI unit in the minor groove of the DNA duplex. Since the CBI unit can be synthesized from commercially available 1,3-naphthalenediol, the present results open up the possibility of large-scale synthesis of alkylating Py-Im polyamides for facilitating their use in future animal studies.

摘要

合成了N-甲基吡咯(Py)-N-甲基咪唑(Im)七环发夹型聚酰胺与1,2,9,9a-四氢环丙并[1,2-c]苯并[1,2-e]吲哚-4-酮(CBI)两种对映体的缀合物12S和12R,并检测了它们的DNA烷基化活性。高分辨率变性凝胶电泳显示,12S在450bp的DNA片段中,能选择性且高效地在一个匹配序列5'-TGACCA-3'处进行烷基化。12S对DNA烷基化的选择性和效率高于相应的环丙并吡咯吲哚(CPI)缀合物11。与之形成鲜明对比的是,另一种对映体12R的DNA烷基化活性非常弱。合成的十聚核苷酸的产物分析证实,12S的烷基化活性与11相当,且12S的反应活性明显高于12R。12S和12R的对映选择性反应活性被认为是由于CBI单元的烷基化环丙烷环在DNA双链小沟中的位置所致。由于CBI单元可由市售的1,3-萘二醇合成,目前的结果为大规模合成烷基化的Py-Im聚酰胺开辟了可能性,便于其在未来动物研究中的应用。

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