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Bioluminescence resonance energy transfer-based biosensors allow monitoring of ligand- and transducer-mediated GPCR conformational changes

机译:基于生物发光共振能量转移的生物传感器可监测配体和传感器介导的GPCR构象变化

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摘要

G protein-coupled receptors (GPCRs) are seven-transmembrane proteins that mediate a variety of cellular response which make them a target of choice for drug development in many indications. It is now well established that GPCRs can adopt several distinct conformations that can be differentially stabilized by various ligands resulting in different biological outcomes, a concept known as functional selectivity. However, due to the highly hydrophobic nature of GPCRs, tools to monitor these conformational ensembles are limited and addressing their conformation dynamics remains a challenge with current structural biology approaches. Here we describe new bioluminescent resonance energy transfer-based biosensors that can probe the conformational rearrangement promoted by ligands with different signaling efficacies as well as the impact of transducers such as G proteins and β-arrestin on these conformational transitions. The design of such sensors for other receptors should be useful to further explore the structural determinants of GPCR functional selectivity.
机译:G蛋白偶联受体(GPCR)是七种跨膜蛋白,可介导多种细胞反应,使它们成为许多适应症中药物开发的首选靶标。现已公认,GPCR可以采用几种不同的构象,这些构象可以被各种配体差异化稳定,从而导致不同的生物学结果,这一概念被称为功能选择性。然而,由于GPCR的高度疏水性,用于监测这些构象集合的工具是有限的,并且解决它们的构象动力学仍然是当前结构生物学方法的挑战。在这里,我们描述了新的基于生物发光共振能量转移的生物传感器,该传感器可以探测具有不同信号传导效率的配体促进的构象重排,以及诸如G蛋白和β-arrestin的传感器对这些构象转变的影响。针对其他受体的此类传感器的设计应有助于进一步探索GPCR功能选择性的结构决定因素。

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