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eUnaG: a new ligand-inducible fluorescent reporter to detect drug transporter activity in live cells

机译:eUnaG:一种新的配体诱导型荧光报告基因用于检测活细胞中的药物转运蛋白活性

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摘要

The absorption, distribution, metabolism and excretion (ADME) of metabolites and toxic organic solutes are orchestrated by the ATP-binding cassette (ABC) transporters and the organic solute carrier family (SLC) proteins. A large number of ABC and SLC transpoters exist; however, only a small number have been well characterized. To facilitate the analysis of these transporters, which is important for drug safety and physiological studies, we developed a sensitive genetically encoded bilirubin (BR)-inducible fluorescence sensor (eUnaG) to detect transporter-coupled influx/efflux of organic compounds. This sensor can be used in live cells to measure transporter activity, as excretion of BR depends on ABC and SLC transporters. Applying eUnaG in functional RNAi screens, we characterize l(2)03659 as a Drosophila multidrug resistant-associated ABC transporter.
机译:ATP结合盒(ABC)转运蛋白和有机溶质载体家族(SLC)蛋白质可协调代谢物和有毒有机溶质的吸收,分布,代谢和排泄(ADME)。存在大量的ABC和SLC转运站;然而,只有少数被很好地表征。为了促进对这些转运蛋白的分析,这对于药物安全性和生理学研究很重要,我们开发了灵敏的遗传编码胆红素(BR)诱导型荧光传感器(eUnaG),以检测转运蛋白偶联的有机化合物的流入/流出。该传感器可用于活细胞中以测量转运蛋白活性,因为BR的排泄取决于ABC和SLC转运蛋白。在功能性RNAi筛选中应用eUnaG,我们将l(2)03659表征为果蝇多药耐药相关的ABC转运蛋白。

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