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控制 G-四链体拓扑结构:构建脂质凝血酶结合适体前药。

Controlling the G-Quadruplex Topology: Toward the Formation of a Lipid Thrombin Binding Aptamer Prodrug.

机构信息

ARNA, INSERM U1212, CNRS 5320, Université de Bordeaux, Bordeaux, F-33076, France.

出版信息

Bioconjug Chem. 2023 Jul 19;34(7):1198-1204. doi: 10.1021/acs.bioconjchem.3c00170. Epub 2023 Jun 21.

Abstract

Important efforts have been devoted toward the development of modified oligonucleotides capable of controlling the secondary structures of the G-quadruplex (G4). Herein, we introduce a photocleavable, lipidated construct of the well-known Thrombin Binding Aptamer (TBA) whose conformation can be dual-controlled by light and/or the ionic strength of the aqueous solution. This novel lipid-modified TBA oligonucleotide spontaneously self-assembles and switches from the conventional antiparallel aptameric fold at low ionic strength to the parallel, inactive conformation of the TBA oligonucleotide strands under physiologically relevant conditions. The latter parallel conformation can be readily and chemoselectively switched back to the antiparallel native aptamer conformation upon light irradiation. Our lipidated construct constitutes an original prodrug of the original TBA with properties that are prone to improving the pharmacodynamic profile of the unmodified TBA.

摘要

人们做出了重要努力来开发可控制 G-四链体(G4)二级结构的修饰寡核苷酸。在此,我们介绍了一种光可裂解的、脂质化的凝血酶结合适体(TBA)构建体,其构象可通过光和/或水溶液的离子强度双重控制。这种新型脂质化 TBA 寡核苷酸可自动组装,并在低离子强度下从常规的反平行适体折叠切换到生理相关条件下 TBA 寡核苷酸链的平行、非活性构象。后一种平行构象可以通过光照轻易且选择性地切换回反平行的天然适体构象。我们的脂质化构建体构成了原始 TBA 的原始前药,其性质易于改善未修饰 TBA 的药效学特性。

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