Off-DNA DNA-Encoded Library Affinity Screening

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Amber L. Hackler, Forrest G. FitzGerald, Vuong Q. Dang, Alexander L. Satz, Brian M. Paegel*
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引用次数: 23

Abstract

DNA-encoded library (DEL) technology is emerging as a key element of the small molecule discovery toolbox. Conventional DEL screens (i.e., on-DNA screening) interrogate large combinatorial libraries via affinity selection of DNA-tagged library members that are ligands of a purified and immobilized protein target. In these selections, the DNA tags can materially and undesirably influence target binding and, therefore, the experiment outcome. Here, we use a solid-phase DEL and droplet-based microfluidic screening to separate the DEL member from its DNA tag (i.e., off-DNA screening), for subsequent in-droplet laser-induced fluorescence polarization (FP) detection of target binding, obviating DNA tag interference. Using the receptor tyrosine kinase (RTK) discoidin domain receptor 1 (DDR1) as a proof-of-concept target in a droplet-scale competition-binding assay, we screened a 67?100-member solid-phase DEL of drug-like small molecules for competitive ligands of DDR1 and identified several known RTK inhibitor pharmacophores, including azaindole- and quinazolinone-containing monomers. Off-DNA DEL affinity screening with FP detection is potentially amenable to a wide array of target classes, including nucleic acid binding proteins, proteins that are difficult to overexpress and purify, or targets with no known activity assay.

Abstract Image

Off-DNA编码文库亲和筛选
dna编码文库(DNA-encoded library, DEL)技术正在成为小分子发现工具箱中的一个关键元素。传统的DEL筛选(即dna上筛选)通过对dna标记的文库成员的亲和选择来询问大型组合文库,这些文库成员是纯化和固定化蛋白质靶标的配体。在这些选择中,DNA标签会对靶标结合产生实质性的不利影响,从而影响实验结果。在这里,我们使用固相DEL和基于微流体的筛选将DEL成员与其DNA标签分离(即off-DNA筛选),随后在液滴内激光诱导荧光偏振(FP)检测目标结合,避免DNA标签干扰。使用受体酪氨酸激酶(RTK)盘状蛋白结构域受体1 (DDR1)作为液滴规模竞争结合试验的概念验证靶点,我们筛选了67?100元固相DEL药物样小分子为DDR1的竞争配体,并鉴定了几种已知的RTK抑制剂药效团,包括氮杂吲哚和含喹唑啉酮的单体。用FP检测进行Off-DNA DEL亲和筛选可能适用于广泛的靶标类别,包括核酸结合蛋白,难以过表达和纯化的蛋白,或没有已知活性测定的靶标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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