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从头设计选择性四链体-双链连接配体及其结合模式的结构特征:靶向 G4 热点。

De Novo Design of Selective Quadruplex-Duplex Junction Ligands and Structural Characterisation of Their Binding Mode: Targeting the G4 Hot-Spot.

机构信息

Glycochemistry and Molecular Recognition group-Dpt. Bio-Organic Chemistry, Instituto de Química Orgánica General (IQOG-CSIC), Juan de la Cierva 3., 28006, Madrid, Spain.

Instituto de Química-Física Rocasolano (IQFR-CSIC), Serrano 119., 28006, Madrid, Spain.

出版信息

Chemistry. 2021 Apr 7;27(20):6204-6212. doi: 10.1002/chem.202005026. Epub 2021 Jan 22.

Abstract

Targeting the interface between DNA quadruplex and duplex regions by small molecules holds significant promise in both therapeutics and nanotechnology. Herein, a new pharmacophore is reported, which selectively binds with high affinity to quadruplex-duplex junctions, while presenting a poorer affinity for G-quadruplex or duplex DNA alone. Ligands complying with the reported pharmacophore exhibit a significant affinity and selectivity for quadruplex-duplex junctions, including the one observed in the HIV-1 LTR-III sequence. The structure of the complex between a quadruplex-duplex junction with a ligand of this family has been determined by NMR methods. According to these data, the remarkable selectivity of this structural motif for quadruplex-duplex junctions is achieved through an unprecedented interaction mode so far unexploited in medicinal and biological chemistry: the insertion of a benzylic ammonium moiety into the centre of the partially exposed G-tetrad at the interface with the duplex. Further decoration of the described scaffolds with additional fragments opens up the road to the development of selective ligands for G-quadruplex-forming regions of the genome.

摘要

通过小分子靶向 DNA 四链体和双链体区域之间的界面,在治疗学和纳米技术方面都具有重要的应用前景。本文报道了一种新的药效团,它能选择性地与四链体-双链体连接区高亲和力结合,而对单独的 G-四链体或双链体 DNA 的亲和力较差。符合报道药效团的配体对四链体-双链体连接区表现出显著的亲和力和选择性,包括在 HIV-1 LTR-III 序列中观察到的连接区。通过 NMR 方法确定了该家族配体与四链体-双链体连接区之间复合物的结构。根据这些数据,这种结构基序对四链体-双链体连接区的显著选择性是通过一种前所未有的相互作用模式实现的,这种模式迄今为止在药物和生物化学中尚未得到利用:将苄基铵部分插入与双链体界面处部分暴露的 G-四联体的中心。进一步用附加片段对所描述的支架进行修饰,为开发基因组中形成 G-四链体区域的选择性配体开辟了道路。

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