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首页> 外文期刊>Nature Communications >Target engagement and drug residence time can be observed in living cells with BRET
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Target engagement and drug residence time can be observed in living cells with BRET

机译:在BRET的活细胞中可以观察到靶标参与和药物停留时间

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摘要

The therapeutic action of drugs is predicated on their physical engagement with cellular targets. Here we describe a broadly applicable method using bioluminescence resonance energy transfer (BRET) to reveal the binding characteristics of a drug with selected targets within intact cells. Cell-permeable fluorescent tracers are used in a competitive binding format to quantify drug engagement with the target proteins fused to Nanoluc luciferase. The approach enabled us to profile isozyme-specific engagement and binding kinetics for a panel of histone deacetylase (HDAC) inhibitors. Our analysis was directed particularly to the clinically approved prodrug FK228 (Istodax/Romidepsin) because of its unique and largely unexplained mechanism of sustained intracellular action. Analysis of the binding kinetics by BRET revealed remarkably long intracellular residence times for FK228 at HDAC1, explaining the protracted intracellular behaviour of this prodrug. Our results demonstrate a novel application of BRET for assessing target engagement within the complex milieu of the intracellular environment.
机译:药物的治疗作用取决于它们与细胞靶标的物理结合。在这里,我们描述了一种使用生物发光共振能量转移(BRET)的广泛适用的方法,以揭示药物与完整细胞内选定靶标的结合特征。细胞渗透性荧光示踪剂以竞争性结合形式使用,以量化药物与与Nanoluc荧光素酶融合的靶蛋白的结合。该方法使我们能够描述一组组蛋白脱乙酰基酶(HDAC)抑制剂的同工酶特异性参与和结合动力学。我们的分析特别针对临床批准的前药FK228(Istodax /罗米地辛),因为其独特的且在很大程度上无法解释持续细胞内作用的机制。通过BRET进行的结合动力学分析表明,FK228在HDAC1处的细胞内停留时间非常长,这解释了该前药的长期细胞内行为。我们的结果证明了BRET在评估细胞内环境复杂环境中的靶标参与方面的新颖应用。

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