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Ethidium derivatives bind to G-quartets, inhibit telomerase and act asfluorescent probes for quadruplexes

机译:乙啶衍生物与G四联体结合,抑制端粒酶并充当四链体的荧光探针

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摘要

The telomeric G-rich single-stranded DNA can adopt in vitro an intramolecular quadruplex structure, which has been shown to directly inhibit telomerase activity. The reactivation of this enzyme in immortalized and most cancer cells suggests that telomerase is a relevant target in oncology, and telomerase inhibitors have been proposed as new potential anticancer agents. In this paper, we describe ethidiurn derivatives that stabilize G-quadruplexes. These molecules were shown to increase the melting temperature of an intramolecular quadruplex structure, as shown by fluorescence and absorbance measurements, and to facilitate the formation of intermolecular quadruplex structures. In addition, these molecules may be used to reveal the formation of multi-stranded DNA structures by standard fluorescence imaging, and therefore become fluorescent probes of quadruplex structures. This recognition was associated with telomerase inhibition in vitro: these derivatives showed a potent anti-telomerase activity, with IC50 values of 18-100 nM in a standard TRAP assay.
机译:端粒富G单链DNA可以在体外采用分子内四链体结构,该结构已被证明可以直接抑制端粒酶活性。该酶在永生化细胞和大多数癌细胞中的重新激活表明端粒酶是肿瘤学中的重要靶标,端粒酶抑制剂已被提议作为新的潜在抗癌剂。在本文中,我们描述了稳定G-四链体的乙二胺衍生物。如荧光和吸光度测量所示,这些分子显示出增加了分子内四链体结构的熔化温度,并促进了分子间四链体结构的形成。此外,这些分子可用于通过标准荧光成像揭示多链DNA结构的形成,因此成为四链体结构的荧光探针。这种识别与体外端粒酶抑制有关:这些衍生物显示出有效的抗端粒酶活性,在标准TRAP分析中的IC50值为18-100 nM。

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