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叠氮基功能化配体在大肠杆菌中比氨基功能化配体具有更高的细胞活性,可用于工程化 preQ 核糖开关。

Superior cellular activities of azido- over amino-functionalized ligands for engineered preQ riboswitches in E.coli.

机构信息

a Institute of Organic Chemistry and Center for Molecular Biosciences Innsbruck CMBI , Leopold-Franzens University , Innsbruck , Austria.

b Division of Molecular Biology, Biocenter , Medical University of Innsbruck , Innsbruck , Austria.

出版信息

RNA Biol. 2018;15(10):1376-1383. doi: 10.1080/15476286.2018.1534526. Epub 2018 Oct 26.

Abstract

For this study, we utilized class-I and class-II preQ-sensing riboswitches as model systems to decipher the structure-activity relationship of rationally designed ligand derivatives in vitro and in vivo. We found that synthetic preQ ligands with amino-modified side chains that protrude from the ligand-encapsulating binding pocket, and thereby potentially interact with the phosphate backbone in their protonated form, retain or even increase binding affinity for the riboswitches in vitro. They, however, led to significantly lower riboswitch activities in a reporter system in vivo in E. coli. Importantly, when we substituted the amino- by azido-modified side chains, the cellular activities of the ligands were restored for the class-I conditional gene expression system and even improved for the class-II counterpart. Kinetic analysis of ligand binding in vitro revealed enhanced on-rates for amino-modified derivatives while they were attenuated for azido-modified variants. This shows that neither high affinities nor fast on-rates are necessarily translated into efficient cellular activities. Taken together, our comprehensive study interconnects in vitro kinetics and in vitro thermodynamics of RNA-ligand binding with the ligands' in vivo performance and thereby encourages azido- rather than amino-functionalized design for enhanced cellular activity.

摘要

在这项研究中,我们利用 I 类和 II 类预 Q 感应核糖开关作为模型系统,在体外和体内破译合理设计的配体衍生物的结构-活性关系。我们发现,具有突出出配体包封结合口袋的氨基修饰侧链的合成预 Q 配体,并且因此可以在其质子化形式下与磷酸骨架相互作用,在体外保留甚至增加对核糖开关的结合亲和力。然而,它们导致大肠杆菌中报告系统中核糖开关的活性显著降低。重要的是,当我们将氨基修饰的侧链取代为叠氮基修饰的侧链时,配体的细胞活性对于 I 类条件基因表达系统得到恢复,对于 II 类对应物甚至得到改善。体外配体结合的动力学分析表明,氨基修饰衍生物的上结合速率增强,而叠氮基修饰变体的上结合速率减弱。这表明,高亲和力和快速上结合速率不一定转化为有效的细胞活性。总之,我们的综合研究将 RNA-配体结合的体外动力学和热力学与配体的体内性能联系起来,从而鼓励使用叠氮基而不是氨基官能化设计来提高细胞活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5676/6284575/9d092ecc97f1/krnb-15-10-1534526-g001.jpg

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