Watkins Derrick, Jiang Liuwei, Nahar Smita, Maiti Souvik, Arya Dev P
NUBAD, LLC, Greenville, South Carolina, United States of America.
Laboratory of Medicinal Chemistry, Department of Chemistry, Clemson University, Clemson, South Carolina, United States of America.
PLoS One. 2015 Dec 11;10(12):e0144251. doi: 10.1371/journal.pone.0144251. eCollection 2015.
MicroRNAs (miRNA) are small RNAs that have a regulatory role in gene expression. Because of this regulatory role, miRNAs have become a new target for therapeutic compounds. Here, we outline an approach to target specific miRNAs using a high throughput capable assay and a 215 compound peptidic-aminosugar (PA) library. Aminosugars have been shown in a number of recent reports as important lead compounds that bind miRNA. In order to screen for compounds that bind miRNA, we have developed a high throughput displacement assay using a fluorescein-neomycin conjugated molecule (F-neo) as a probe for competitive miRNA binding compounds. We have applied the F-neo assay to four different miRNA constructs and the assay is applicable to most miRNAs, at various stages of processing. The results of the screen were validated by the determination of the IC50 for a select group of compounds from the library. For example, we identified eight compounds that bind to hsa-miR 504 with higher affinity than the parent neomycin. From the F-neo displacement assay we found that the number of binding sites differs for each miRNA, and the binding sites appear to differ both physically and chemically, with different affinity of the compounds resulting from the size of the molecule as well as the chemical structure. Additionally, the affinity of the compounds was dependent on the identity and position of the amino acid position of conjugation and the affinity of the compounds relative to other compounds in the library was miRNA dependent with the introduction of a second amino acid.
微小RNA(miRNA)是在基因表达中起调控作用的小RNA。由于这种调控作用,miRNA已成为治疗性化合物的新靶点。在此,我们概述了一种使用高通量检测方法和一个包含215种化合物的肽基氨基糖(PA)文库来靶向特定miRNA的方法。近期的多项报告表明氨基糖是与miRNA结合的重要先导化合物。为了筛选与miRNA结合的化合物,我们开发了一种高通量置换检测方法,使用荧光素 - 新霉素共轭分子(F - neo)作为竞争性miRNA结合化合物的探针。我们已将F - neo检测方法应用于四种不同的miRNA构建体,该检测方法适用于处于不同加工阶段的大多数miRNA。通过测定文库中一组选定化合物的IC50对筛选结果进行了验证。例如,我们鉴定出八种与hsa - miR 504结合的亲和力高于亲本新霉素的化合物。从F - neo置换检测中我们发现,每种miRNA的结合位点数量不同,并且结合位点在物理和化学性质上似乎都有所不同,化合物的亲和力因分子大小以及化学结构而异。此外,化合物的亲和力取决于共轭氨基酸位置的身份和位置,并且在引入第二个氨基酸后,化合物相对于文库中其他化合物的亲和力取决于miRNA。