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Functional expression of mammalian opioid receptors in insect cells and high-throughput screening platforms for receptor ligand mimetics

机译:哺乳动物阿片受体在昆虫细胞中的功能表达和受体配体模拟物的高通量筛选平台

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摘要

Lepidopteran cell lines have been engineered to constitutively express high levels of mouse delta opioid receptors either alone or in combination with human G alpha 16 protein. Biochemical and pharmacological studies demonstrate that these lines contain all the mediator G proteins and downstream effectors required for opioid receptor function, including phospholipase C, and that expression of exogenous G alpha 16 does not contribute significantly to increased receptor responses upon activation. The activation of the phospholipase C pathway in the transformed cells upon stimulation with known receptor ligands results in easily and quantitatively measurable increases in free intracellular calcium, which can be monitored by automated fluorescent methods, while the addition of specific antagonists blocks the agonist-induced responses. Therefore, the transformed lepidopteran cell lines can be used as sensitive high-throughput screening platforms for fast detection of delta opioid receptor ligand mimetics (agonists and antagonists) in collections of natural products and synthetic compounds.
机译:鳞翅目细胞系已经被工程化以单独或与人Gα16蛋白组合组成性表达高水平的小鼠δ阿片样物质受体。生化和药理研究表明,这些细胞系包含阿片受体功能所需的所有介质G蛋白和下游效应子,包括磷脂酶C,并且外源Gα16的表达在激活后对增加的受体反应没有显着贡献。已知受体配体刺激后,转化细胞中磷脂酶C途径的激活导致游离细胞内钙的定量容易测量增加,这可以通过自动荧光方法进行监测,同时添加特定的拮抗剂可以阻断激动剂诱导的反应。因此,转化的鳞翅类细胞系可以用作灵敏的高通量筛选平台,用于快速检测天然产物和合成化合物集合中的δ阿片受体配体模拟物(激动剂和拮抗剂)。

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