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Specific interactions with intra- and intermolecular G-quadruplex DNA structures by hydrosoluble coronene derivatives: a new class of telomerase inhibitors.

机译:水溶性冠烯衍生物与分子内和分子间G-四链体DNA结构的特异性相互作用:一类新型的端粒酶抑制剂。

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In developing G-quadruplex interactive telomerase inhibitors two main features have to be taken into account: the hydrophobic interactions with the G-quartet plane and the electrostatic interactions with the negatively charged phosphates of the four grooves. In this paper, we report the synthesis of four hydrosoluble coronene derivatives, which are characterized by a large hydrophobic aromatic core and four orthogonal hydrophilic side chains. We have studied their ability to induce both inter- and intramolecular G-quadruplex structures and found a significant selectivity of all the coronene derivatives for the intramolecular G-quadruplex. The efficiency in inhibiting human telomerase has been evaluated in a cell-free system and the experimental results correlate with the relative affinities of these compounds for the G-quadruplex monomeric structure, as derived by molecular modelling simulations. Thus, the coronene derivatives can be considered as a new class of telomerase inhibitors, although further investigations are surely necessary to fully exploit their features.
机译:在开发G四联体相互作用端粒酶抑制剂时,必须考虑两个主要特征:与G四联体平面的疏水相互作用和与四个凹槽的带负电荷的磷酸盐的静电相互作用。在本文中,我们报告了四种水溶性冠心烯衍生物的合成,这些衍生物的特征是大的疏水性芳族核和四个正交的亲水性侧链。我们已经研究了它们诱导分子间和分子内G-四链体结构的能力,并且发现了所有苯并戊二烯衍生物对于分子内G-四链体的显着选择性。已经在无细胞系统中评估了抑制人类端粒酶的效率,并且实验结果与这些化合物对G-四链体单体结构的相对亲和力有关,这是通过分子建模模拟得出的。因此,尽管确实需要进一步研究以充分利用它们的特征,但该花冠烯衍生物可以被认为是一类新型的端粒酶抑制剂。

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