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Antitumor polycyclic acridines. Part 16. Triplex DNA as a target for DNA-binding polycyclic acridine derivatives.

机译:抗肿瘤多环a啶。第16部分。三元组DNA作为结合DNA的多环a啶衍生物的靶标。

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Triple-stranded DNA structures have been implicated in a number of major biological processes, including the transcription and translation of a number of genes, as well as in the interaction of DNA with a number of proteins. Furthermore, antigene therapies under development are based on the recognition and binding of a single oligonucleotide strand to a double-stranded sequence, thus forming a triple helix. Triplex DNA formation is a relatively weak and temporary phenomenon; therefore, molecules that selectively bind to and stabilize triple helices may show a variety of novel biological effects. The biophysical and biological characterization of a series of antitumor polycyclic acridines that bind to triplex DNA is reported. These compounds, whose synthesis has been previously reported, have been tested for their interaction with both purine and pyrimidine type triple helices and compared with the relevant double-stranded DNA. As a pyrimidine triplex model we have used the T*AT sequence, which we have compared with the AT duplex, whereas the purine triplex oligonucleotide d[G3A4G3]*d[G3A4G3].d[C3T4C3] has been compared with the duplex d[G3A4G3].d[C3T4C3]. The compounds demonstrate various degrees of preferential binding to triplex DNA over normal duplex DNA, as measured by UV, fluorescence, circular dichroism, and thermal denaturation. Tri-substituted acridine derivatives demonstrated the highest affinity and ability to stabilize triplex DNA structures. Furthermore, structure/affinity analysis gives insights into the structural features that optimize affinity and selectivity for triplex DNA, and may play a role in their profile of antitumor activity.
机译:三链DNA结构与许多主要的生物学过程有关,包括许多基因的转录和翻译,以及DNA与许多蛋白质的相互作用。此外,正在开发的抗原疗法基于单条寡核苷酸链与双链序列的识别和结合,从而形成三螺旋。三重DNA的形成是一个相对脆弱和暂时的现象。因此,选择性结合并稳定三重螺旋的分子可能显示出多种新颖的生物学效应。报道了与三链体DNA结合的一系列抗肿瘤多环a啶的生物物理和生物学特性。这些化合物的合成已有报道,已经测试了它们与嘌呤和嘧啶型三重螺旋的相互作用,并与相关的双链DNA进行了比较。作为嘧啶三链体模型,我们使用了T * AT序列,将其与AT双链体进行了比较,而嘌呤三链体寡核苷酸d [G3A4G3] * d [G3A4G3] .d [C3T4C3]与双链体d [ G3A4G3] .d [C3T4C3]。与通过UV,荧光,圆二色性和热变性测得的结果相比,该化合物显示出与正常双链体DNA不同程度的优先结合三链体DNA。三取代a啶衍生物表现出最高的亲和力和稳定三链DNA结构的能力。此外,结构/亲和力分析可深入了解可优化对三链DNA的亲和力和选择性的结构特征,并可能在其抗肿瘤活性中发挥作用。

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