Use of differential scanning fluorimetry as a high-throughput assay to identify nuclear receptor ligands.

Nuclear receptor signaling Pub Date : 2012-01-01 Epub Date: 2012-02-27 DOI:10.1621/nrs.10002
Kara DeSantis, Aaron Reed, Raneen Rahhal, Jeff Reinking
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引用次数: 38

Abstract

Identification of ligands that interact with nuclear receptors is both a major biological problem and an important initial step in drug discovery. Several in vitro and in vivo techniques are commonly used to screen ligand candidates against nuclear receptors; however, none of the current assays allow screening without modification of either the protein and/or the ligand in a high-throughput fashion. Differential scanning fluorimetry (DSF) allows unmodified potential ligands to be screened as 10µL reactions in 96-well format against partially purified protein, revealing specific interactors. As a proof of principle, we used a commercially-available nuclear receptor ligand candidate chemical library to identify interactors of the human estrogen receptor α ligand binding domain (ERα LBD). Compounds that interact specifically with ERα LBD stabilize the protein and result in an elevation of the thermal denaturation point, as monitored by the environmentally-sensitive dye SYPRO orange. We successfully identified all three compounds in the library that have previously been identified to interact with ERα, with no false positive results.

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使用差示扫描荧光法作为一种高通量测定方法来鉴定核受体配体。
鉴定与核受体相互作用的配体既是一个重大的生物学问题,也是药物发现的重要的第一步。几种体外和体内技术通常用于筛选核受体的候选配体;然而,目前没有一种检测方法允许在不以高通量方式对蛋白质和/或配体进行修饰的情况下进行筛选。差示扫描荧光法(DSF)允许未修饰的潜在配体在96孔格式的10µL反应中筛选部分纯化的蛋白质,揭示特定的相互作用物。为了证明这一原理,我们使用了一个市售的核受体配体候选化学文库来鉴定人类雌激素受体α配体结合域(ERα LBD)的相互作用物。与ERα LBD特异性相互作用的化合物稳定了蛋白质,并导致热变性点的升高,正如环境敏感染料SYPRO橙色所监测的那样。我们成功地鉴定了文库中的所有三种化合物,这些化合物以前被鉴定为与ERα相互作用,没有假阳性结果。
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