核受体双荧光素酶报告基因检测的改进。

Current chemical genomics Pub Date : 2010-01-01 Epub Date: 2010-05-26 DOI:10.2174/1875397301004010043
Aileen Paguio, Pete Stecha, Keith V Wood, Frank Fan
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引用次数: 39

摘要

核受体通过调控基因转录在许多细胞功能中发挥重要作用。它也是药物发现的一个大靶标类。荧光素酶报告法由于其动态范围广、内源性活性低和易于使用而经常用于研究核受体功能。近年来对荧光素酶基因和载体的改进进一步增强了它们的实用性。在这里,我们将这些改进应用于研究核受体的两种报告格式。第一个实验在不稳定的荧光素酶上游含有小鼠乳腺肿瘤病毒启动子。该启动子中核激素受体应答元件的存在使得内源性和/或外源性全长受体的研究成为可能。第二种方法在一个载体上包含与GAL4 DNA结合域(DBD)融合的核受体的配体结合域(LBD),在另一个载体上包含荧光素酶报告基因上游的多个GAL4上游激活序列(UAS)。我们发现,荧光素酶报告基因的密码子优化增加了表达水平,同时将蛋白质不稳定序列掺入荧光素酶中,导致两种格式的测定动态范围更大。确定了产生最佳响应的最佳无人机数量。核受体LBD/GAL4 DBD融合的表达载体也组成性地表达一种Renilla luciferase-neo(R)融合蛋白,该融合蛋白具有选择能力(G418抗性,neo(R))和内控能力(Renilla luciferase)。这种双荧光素酶格式允许在药物筛选过程中检测化合物细胞毒性或脱靶表达变化,因此提高了数据质量。这些荧光素酶报告基因检测为研究全长核受体和配体结合域的功能提供了更好的研究和药物发现工具。
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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Improved dual-luciferase reporter assays for nuclear receptors.

Nuclear receptors play important roles in many cellular functions through control of gene transcription. It is also a large target class for drug discovery. Luciferase reporter assays are frequently used to study nuclear receptor function because of their wide dynamic range, low endogenous activity, and ease of use. Recent improvements of luciferase genes and vectors have further enhanced their utilities. Here we applied these improvements to two reporter formats for studying nuclear receptors. The first assay contains a Murine Mammary Tumor Virus promoter upstream of a destabilized luciferase. The presence of response elements for nuclear hormone receptor in this promoter allows the studies of endogenous and/or exogenous full length receptors. The second assay contains a ligand binding domain (LBD) of a nuclear receptor fused to the GAL4 DNA binding domain (DBD) on one vector and multiple Gal4 Upstream Activator Sequences (UAS) upstream of luciferase reporter on another vector. We showed that codon optimization of luciferase reporter genes increased expression levels in conjunction with the incorporation of protein destabilizing sequences into luciferase led to a larger assay dynamic range in both formats. The optimum number of UAS to generate the best response was determined. The expression vector for nuclear receptor LBD/GAL4 DBD fusion also constitutively expresses a Renilla luciferase-neo(R) fusion protein, which provides selection capability (G418 resistance, neo(R)) as well as an internal control (Renilla luciferase). This dual-luciferase format allowed detecting compound cytotoxicity or off-target change in expression during drug screening, therefore improved data quality. These luciferase reporter assays provided better research and drug discovery tools for studying the functions of full length nuclear receptors and ligand binding domains.

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