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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Targeting G-quadruplex DNA structures in the telomere and oncogene Promoter regions by benzimidazole-carbazole ligands
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Targeting G-quadruplex DNA structures in the telomere and oncogene Promoter regions by benzimidazole-carbazole ligands

机译:通过苯并咪唑 - 咔唑配体靶向端粒体和癌基因启动子区的G-QuadrepledNA结构

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Recent studies support the idea that G-quadruplex structures in the promoter regions of oncogenes and telomere DNA can serve as potential therapeutic targets in the treatment of cancer. Accordingly, several different types of organic small molecules that stabilize G-quadruplex structures and inhibit telomerase activity have been discerned. Here, we describe the binding of benzimidazole-carbazole ligands to G-quadruplex structures formed in G-rich DNA sequences containing the promoter regions of human c-MYC, c-KIT1, c-KIT2, VEGF and BCL2 proto-oncogenes. The fluorescence spectroscopic data indicate that benzimidazole-carbazole ligands bind and stabilize the G-quadruplexes in the promoter region of oncogenes. The molecular docking studies provide insights into the mode and extent of binding of this class of ligands to the G-quadruplexes formed in oncogene promoters. The high stability of these G-quadruplex structures was validated by thermal denaturation and telomerase-catalyzed extension of the 3' end. Notably, benzimidazole-carbazole ligands suppress the expression of oncogenes in cancer cells in a dose-dependent manner. We anticipate that benzimidazole-carbazole ligands, by virtue of their ability to stabilize G-quadruplex structures in the promoter regions of oncogenes, might reduce the risk of cancer through the loss of function in the proteins encoded by these genes. (C) 2018 Elsevier Masson SAS. All rights reserved.
机译:最近的研究支持癌肠球菌和端粒体DNA启动子区域中的G-Quadreplex结构可以作为治疗癌症的潜在治疗靶标。因此,已经辨别出稳定G- Quadflex结构和抑制端粒酶活性的几种不同类型的有机小分子。这里,我们描述了苯并咪唑 - 咔唑配体与形成的G-Quadflex结构的结合,其在含有人C-MYC,C-KIT1,C-KIT2,VEGF和BCL2原型癌基因的启动子区域的G的DNA序列中形成。荧光光谱数据表明苯并咪唑 - 咔唑配体结合并稳定诱导剂区域的诱导剂区域中的G-quadreples。分子对接研究提供了在该类配体与在甲基促进剂中形成的G-quadrupleces的结合的模式和程度的洞察力。通过热变性和端粒酶催化的3'末端的热变性和端粒酶催化延伸,验证了这些G-四反合结构的高稳定性。值得注意的是,苯并咪唑 - 咔唑配体以剂量依赖性方式抑制癌细胞中癌细胞的表达。我们预期苯并咪唑 - 咔唑配体,凭借其稳定在癌基因的启动子区域中的G-Quadruple结构的能力,可以通过这些基因编码的蛋白质中的功能丧失来降低癌症的风险。 (c)2018年Elsevier Masson SAS。版权所有。

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