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荧光配体平衡置换:一种高通量鉴定 FMN 核糖开关结合小分子的方法。

Fluorescent Ligand Equilibrium Displacement: A High-Throughput Method for Identification of FMN Riboswitch-Binding Small Molecules.

机构信息

Program in Biophysics, University of Michigan, Ann Arbor, MI 48109, USA.

Program in Chemical Biology, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Int J Mol Sci. 2024 Jan 6;25(2):0. doi: 10.3390/ijms25020735.

Abstract

Antibiotic resistance remains a pressing global concern, with most antibiotics targeting the bacterial ribosome or a limited range of proteins. One class of underexplored antibiotic targets is bacterial riboswitches, structured RNA elements that regulate key biosynthetic pathways by binding a specific ligand. We developed a methodology termed Fluorescent Ligand Equilibrium Displacement (FLED) to rapidly discover small molecules that bind the flavin mononucleotide (FMN) riboswitch. FLED leverages intrinsically fluorescent FMN and the quenching effect on RNA binding to create a label-free, in vitro method to identify compounds that can bind the apo population of riboswitch in a system at equilibrium. The response difference between known riboswitch ligands and controls demonstrates the robustness of the method for high-throughput screening. An existing drug discovery library that was screened using FLED resulted in a final hit rate of 0.67%. The concentration response of each hit was determined and revealed a variety of approximate effective concentration values. Our preliminary screening data support the use of FLED to identify small molecules for medicinal chemistry development as FMN riboswitch-targeted antibiotic compounds. This robust, label-free, and cell-free method offers a strong alternative to other riboswitch screening methods and can be adapted to a variety of laboratory setups.

摘要

抗生素耐药性仍然是一个紧迫的全球问题,大多数抗生素针对的是细菌核糖体或有限范围的蛋白质。一类研究较少的抗生素靶点是细菌核糖体开关,这是一种结构 RNA 元件,通过结合特定的配体来调节关键的生物合成途径。我们开发了一种称为荧光配体平衡置换(FLED)的方法,用于快速发现与黄素单核苷酸(FMN)核糖体开关结合的小分子。FLED 利用内在荧光 FMN 和 RNA 结合的淬灭效应,在平衡体系中创建了一种无需标记的体外方法,用于鉴定可以结合核糖体开关apo 群体的化合物。已知核糖体开关配体和对照之间的响应差异证明了该方法进行高通量筛选的稳健性。使用 FLED 筛选的现有药物发现文库的最终命中率为 0.67%。每个命中的浓度响应都被确定,并显示了各种近似有效浓度值。我们的初步筛选数据支持使用 FLED 来鉴定小分子,以用于药物化学开发,作为 FMN 核糖体开关靶向抗生素化合物。这种强大、无标记和无细胞的方法是其他核糖体开关筛选方法的有力替代品,并且可以适应各种实验室设置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce2c/11154562/88347b916c0e/ijms-25-00735-g001.jpg

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