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首页> 外文期刊>Bioconjugate Chemistry >Symmetrical Bisbenzimidazoles with Benzenediyl Spacer: The Role of the Shape of the Ligand on the Stabilization and Structural Alterations in Telomeric G-Quadruplex DNA and Telomerase Inhibition
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Symmetrical Bisbenzimidazoles with Benzenediyl Spacer: The Role of the Shape of the Ligand on the Stabilization and Structural Alterations in Telomeric G-Quadruplex DNA and Telomerase Inhibition

机译:带有苯甲二烯间隔物的对称双苯并咪唑类:配体形状对端粒G-四链体DNA和端粒酶抑制作用的稳定和结构改变的作用

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摘要

The extremities of chromosomes end in a G-rich single-stranded overhang that has been implicated in the onset of the replicate senescence. The repeated sequence forming a G-overhang is able to adopt a four-stranded DNA structure called G-quadruplex, which is a poor substrate for the enzyme telomerase. Small molecule based ligands that selectively stabilize the telomeric G-quadruplex DNA, induce telomere shortening eventually leading to cell death. Herein, we have investigated the G-quadruplex DNA interaction with two isomeric bisbenzimidazole-based compounds that differ in terms of shape (V-shaped angular vs linear). While the linear isomer induced some stabilization of the intramolecular G-quadruplex structure generated in the presence of Na~+, the other, having V-shaped central planar core, caused a dramatic structural alteration of the latter, above a threshold concentration. This transition was evident from the pronounced changes observed in the circular dichroism spectra and from the gel mobility shift assay involving the G-quadruplex DNA. Notably, this angular isomer could also induce the G-quadruplex formation in the absence of any added cation. The ligand-quadruplex complexes were investigated by computational molecular modeling, providing further information on structure-activity relationships. Finally, TRAP (telomerase repeat amplification protocol) experiments demonstrated that the angular isomer is selective toward the inhibition of telomerase activity.
机译:染色体的末端以富含G的单链突出端结束,这与复制衰老的发生有关。形成G突出端的重复序列能够采用称为G-四链体的四链DNA结构,这是端粒酶的不良底物。基于小分子的配体可选择性稳定端粒G-四链体DNA,诱导端粒缩短,最终导致细胞死亡。在本文中,我们研究了G-四链体DNA与两种异构的双苯并咪唑基化合物的相互作用,这些化合物的形状不同(V形角形与线性形)。虽然线性异构体诱导了在存在Na +的情况下产生的分子内G-四链体结构的某种稳定,但是具有V形中心平面核的另一个异构体导致了其在阈值浓度以上的剧烈的结构改变。从圆二色性光谱中观察到的显着变化以及涉及G-四链体DNA的凝胶迁移率移动分析可以明显看出这种转变。值得注意的是,在不存在任何添加阳离子的情况下,该角异构体也可以诱导G-四链体的形成。通过计算分子建模研究了配体-四链体复合物,提供了关于结构-活性关系的进一步信息。最后,TRAP(端粒酶重复扩增方案)实验证明,该角异构体对抑制端粒酶活性具有选择性。

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