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Development of Novel Intramolecular FRET-Based ABC Transporter Biosensors to Identify New Substrates and Modulators

机译:基于分子内FRET的新型ABC转运生物传感器的开发以识别新的底物和调节剂。

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摘要

Multidrug resistance protein 1 (MRP1) can efflux a wide variety of molecules including toxic chemicals, drugs, and their derivatives out of cells. Substrates of MRP1 include anti-cancer agents, antibiotics, anti-virals, anti-human immunodeficiency virus (HIV), and many other drugs. To identify novel substrates and modulators of MRP1 by exploiting intramolecular fluorescence resonance energy transfer (FRET), we genetically engineered six different two-color MRP1 proteins by changing green fluorescent protein (GFP) insertion sites, while keeping the red fluorescent protein (RFP) at the C-terminal of MRP1. Four of six recombinant proteins showed normal expression, localization, and transport activity. We quantified intramolecular FRET using ensemble fluorescence spectroscopy in response to binding of known substrate or ATP alone, substrate/ATP, and trapping of the transporter in closed conformation by vanadate. Recombinant MRP1 proteins GR-881, GR-888, and GR-905 exhibited reproducible and higher FRET changes under all tested conditions and are very promising for use as MRP1 biosensors. Furthermore, we used GR-881 to screen 40 novel anti-cancer drugs and identified 10 hits that potentially directly interact with MRP1 and could be substrates or modulators. Profiling of drug libraries for interaction with MRP1 can provide very useful information to improve the efficacy and reduce the toxicity of various therapies.
机译:多药抗性蛋白1(MRP1)可以将多种分子排出体外,包括有毒化学物质,药物及其衍生物。 MRP1的底物包括抗癌药,抗生素,抗病毒药,抗人免疫缺陷病毒(HIV)和许多其他药物。为了通过利用分子内荧光共振能量转移(FRET)来鉴定MRP1的新型底物和调节剂,我们通过改变绿色荧光蛋白(GFP)插入位点,同时保持红色荧光蛋白(RFP)处于遗传状态,对六种不同的两色MRP1蛋白进行了基因工程改造。 MRP1的C端。六个重组蛋白中的四个显示正常表达,定位和转运活性。我们使用集合荧光光谱法对已知底物或ATP单独结合,底物/ ATP以及钒酸盐封闭构象中的转运蛋白进行捕获,从而对分子内FRET进行了定量。重组MRP1蛋白GR-881,GR-888和GR-905在所有测试条件下均表现出可重现和更高的FRET变化,非常有望用作MRP1生物传感器。此外,我们使用GR-881筛选了40种新型抗癌药物,并鉴定了10种可能直接与MRP1相互作用且可能是底物或调节剂的命中物。与MRP1相互作用的药物库分析可提供非常有用的信息,以提高疗效并降低各种疗法的毒性。

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