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端粒 DNA 与 C-myc22 G-四链体与 11 种天然生物碱的相互作用。

The interaction of telomeric DNA and C-myc22 G-quadruplex with 11 natural alkaloids.

机构信息

Key Laboratory of Cell Proliferation and Regulation Biology, Ministry of Education, Beijing Key Laboratory of Gene Engineering Drugs and Biological Technology College of Life Science, Beijing Normal University, Beijing, People's Republic of China.

出版信息

Nucleic Acid Ther. 2012 Apr;22(2):127-36. doi: 10.1089/nat.2012.0342.

Abstract

Telomeric DNA and C-myc22 are DNA G-quadruplex (G4)-forming sequences associated with tumorigenesis. Ligands that can facilitate the formation and increase the stabilization of G4 can halt tumor cell proliferation and have been regarded as potential anti-cancer drugs. In the present study, we have investigated the interaction of 11 natural alkaloids with G4 formed by telomeric DNA and C-myc22 sequences. Our results indicated that sanguinarine (San), palmatine (Pal), and berberine (Beb) of the first series (S1) can induce the formation of G4 as well as increase the stabilization ability. Daurisoline (S2-1), O-methyldauricine (S2-2), O-diacetyldaurisoline (S2-3), daurinoline (S2-4), dauricinoline (S2-5), N,N'-dimethyldauricine iodide (S2-6), and N,N'-dimethyldaurisoline iodide (S2-7) of the second series (S2) showed similar stabilization ability. We found that unsaturated ring C, N(+) positively charged centers, and conjugated aromatic rings are key factors to increase the stabilization ability of S1, and we gave some advice on structure modification to S2 through structure-activity study. Besides, we found San and Pal to be cell cycle blocker in G(1). San was speculated to bind to G4 through intercalation or end stacking.

摘要

端粒 DNA 和 C-myc22 是与肿瘤发生相关的 DNA G-四链体 (G4) 形成序列。能够促进 G4 形成并增加其稳定性的配体可以阻止肿瘤细胞增殖,被认为是潜在的抗癌药物。在本研究中,我们研究了 11 种天然生物碱与端粒 DNA 和 C-myc22 序列形成的 G4 的相互作用。我们的结果表明,第一个系列(S1)中的血根碱 (San)、巴马汀 (Pal) 和小檗碱 (Beb) 可以诱导 G4 的形成并增加其稳定性。第二个系列(S2)中的蝙蝠葛苏林碱 (S2-1)、O-甲基蝙蝠葛苏林碱 (S2-2)、O-二乙酰蝙蝠葛苏林碱 (S2-3)、蝙蝠葛碱 (S2-4)、蝙蝠葛任碱 (S2-5)、N,N'-二甲基金雀花碱碘化物 (S2-6) 和 N,N'-二甲基金雀花苏林碱碘化物 (S2-7) 也具有相似的稳定性。我们发现,不饱和环 C、N(+) 正电荷中心和共轭芳环是增加 S1 稳定性的关键因素,并且通过结构-活性研究对 S2 提出了一些结构修饰建议。此外,我们发现 San 和 Pal 在 G(1) 中是细胞周期阻断剂。San 被推测通过嵌入或末端堆积与 G4 结合。

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