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首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >A reporter assay for G-protein-coupled receptors using a B-cell line suitable for stable episomal expression
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A reporter assay for G-protein-coupled receptors using a B-cell line suitable for stable episomal expression

机译:使用适合稳定游离表达的B细胞株进行G蛋白偶联受体的报告基因检测

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We have established a cAMP response element (CRE)-mediated reporter assay system for G-protein-coupled receptors (GPCRs) using an oriP-based estrogen-inducible expression vector and the B-cell line (GBC53 or GBCC71) that expresses EBNA-1 and is adapted to serum-free culture. GBC53 harbors a GAL4-ER expression unit and a CRE-luciferase gene in the genome, and GBCC71 also harbors expression units for two chimeric Gαs proteins (Gs/q and Gs/i). Introduction of a GPCR expression plasmid into GBC53 or GBCC71 creates polyclonal stable transformants in 2. weeks, and these are easily expanded and used for assays after induction of the GPCR expression. Using GBC53, we detected ligand-dependent signals of Gs-coupled GPCRs such as glucagon-like peptide 1 receptor (GLP1R) and β2 adrenergic receptor (β2AR) with high sensitivity. Interestingly, we also detected constitutive activity of β2AR. Using GBCC71, we detected ligand-dependent signals of Gq- or Gi-coupled GPCRs such as H1 histamine receptor and CXCR1 chemokine receptor in addition to Gs-coupled GPCRs. An agonist, antagonist, or inverse agonist was successfully evaluated in this system. We succeeded in constructing a 384-well high-throughput screening (HTS) system for GLP1R. This system enabled us to easily and rapidly make a large number of efficient GPCR assay systems suitable for HTS as well as ligand hunting of orphan GPCRs.
机译:我们已使用基于oriP的雌激素诱导型表达载体和表达EBNA的B细胞系(GBC53或GBCC71)建立了用于G蛋白偶联受体(GPCR)的cAMP响应元件(CRE)介导的记者分析系统。 1,适用于无血清培养。 GBC53在基因组中带有一个GAL4-ER表达单元和一个CRE荧光素酶基因,而GBCC71还带有两个嵌合Gαs蛋白(Gs / q和Gs / i)的表达单元。将GPCR表达质粒导入GBC53或GBCC71可以在2周内产生多克隆稳定转化子,这些转化子很容易扩增,并在诱导GPCR表达后用于测定。使用GBC53,我们以高灵敏度检测了Gs偶联GPCR的配体依赖性信号,如胰高血糖素样肽1受体(GLP1R)和β2肾上腺素能受体(β2AR)。有趣的是,我们还检测到了β2AR的组成型活性。使用GBCC71,除了Gs偶联GPCR,我们还检测了Gq或Gi偶联GPCR的配体依赖性信号,例如H1组胺受体和CXCR1趋化因子受体。在该系统中成功评估了激动剂,拮抗剂或反向激动剂。我们成功地为GLP1R构建了384孔高通量筛选(HTS)系统。该系统使我们能够轻松快捷地制造出大量适用于HTS以及孤儿GPCR配体搜寻的高效GPCR分析系统。

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