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Does ligand symmetry play a role in the stabilization of DNA G-quadruplex host-guest complexes?

机译:配体对称性是否在DNA G-四链体-客体复合体的稳定中发挥作用?

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摘要

In efforts to find agents with improved biological activity against cancer cells, recent years have seen an increased interest in the study of small molecules able to bind the deoxyribonucleic acid (DNA) when it assumes secondary structures known as G-quadruplexes (G4s) preferring them over the B form. Currently, several compounds reported in literature have already shown to be good candidates as G4s DNA stabilizers. Even though some specific features for the G4s affinity are known, such as a π-delocalized system able to stack at the top/end of a G-tetrad and positively charged substituents able to interact with the grooves, it is not clear yet what kind of structural features affect more the G4 arrangement. This is mainly due to the structure heterogeneity of both the G4 stabilizer compounds and the DNA G4s isoforms. In this review, we aim to classify some known G4 binders by analyzing them from a new perspective surprisingly never approached up to date: the symmetry features. Molecular symmetry could be responsible for the specific binding mode to the G4-DNA but could also be crucial in determining different isoform affinity. We propose to classify the G4s stabilizers in five main point group symmetry classes. This classification could be useful to design new ligands able to stabilize a specific G-quadruplex isoform, in order to increase the selectivity of new potential anticancer G-quadruplex targeting drugs, a goal yet highly sought by researchers.
机译:为了寻找对癌细胞具有改善的生物活性的药物,近年来,人们对研究能够结合脱氧核糖核酸(DNA)的小分子的兴趣日益浓厚,因为它假定二级结构被称为G-四链体(G4)偏爱它们。在B表格上。当前,文献中报道的几种化合物已经显示出作为G4s DNA稳定剂的良好候选物。尽管已知一些特定的G4s亲和特征,例如能够在G-tetrad的顶部/末端堆叠的π-离域系统和能够与凹槽相互作用的带正电荷的取代基,但尚不清楚哪种类型结构特征的影响更多地影响了G4的安排。这主要是由于G4稳定剂化合物和DNA G4s同工型的结构异质性。在这篇综述中,我们旨在通过从一个新的角度对某些已知的G4结合剂进行分析,从而对它们进行分类,这一点出人意料地从未达到过:对称性。分子对称性可能负责与G4-DNA的特异性结合模式,但在确定不同的同工型亲和力中也可能至关重要。我们建议将G4s稳定剂分为五个主要的点群对称性类别。这种分类对于设计能够稳定特定G-四链体同工型的新配体可能有用,以增加新的潜在抗癌G-四链体靶向药物的选择性,这是研究人员急切追求的目标。

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