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Imaging G protein-coupled receptors while quantifying their ligand-binding free-energy landscape

机译:成像G蛋白偶联受体,同时定量其配体结合自由能态

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Imaging native membrane receptors and testing how they interact with ligands is of fundamental interest in the life sciences but has proven remarkably difficult to accomplish. Here, we introduce an approach that uses force-distance curve-based atomic force microscopy to simultaneously image single native G protein-coupled receptors in membranes and quantify their dynamic binding strength to native and synthetic ligands. We measured kinetic and thermodynamic parameters for individual protease-activated receptor-1 (PAR1) molecules in the absence and presence of antagonists, and these measurements enabled us to describe PAR1's ligand-binding free-energy landscape with high accuracy. Our nanoscopic method opens an avenue to directly image and characterize ligand binding of native membrane receptors.
机译:成像天然膜受体并测试它们如何与配体相互作用是生命科学领域的基本兴趣,但事实证明,这项工作非常困难。在这里,我们介绍一种方法,该方法使用基于力距离曲线的原子力显微镜同时对膜中的单个天然G蛋白偶联受体进行成像,并量化它们与天然和合成配体的动态结合强度。我们在不存在和存在拮抗剂的情况下测量了单个蛋白酶激活受体1(PAR1)分子的动力学和热力学参数,这些测量结果使我们能够高精度描述PAR1的配体结合自由能态。我们的纳米方法为直接成像和表征天然膜受体的配体结合开辟了一条途径。

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