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首页> 外文期刊>Analytical and bioanalytical chemistry >Single-molecule force spectroscopy study of interactions between angiotensin II type 1 receptor and different biased ligands in living cells
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Single-molecule force spectroscopy study of interactions between angiotensin II type 1 receptor and different biased ligands in living cells

机译:血管紧张素II型受体与不同偏向配体的相互作用的单分子力光谱研究

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摘要

Angiotensin II type 1 receptor (AT1R), a typical G protein-coupled receptor, plays a key role in regulating many cardiovascular functions. Different ligands can bind with AT1R to selectively activate either G protein (Gq) or β-arrestin (β-arr) pathway, or both pathways, but the molecular mechanism is not clear yet. In this work, we used, for the first time, atomic force microscopy-based single molecule force spectroscopy (SMFS) to study the interactions of AT1R with three types of ligands, balanced ligand, Gq-biased ligand, and β-arr-biased ligand, in living cells. The results revealed their difference in binding force and binding stability. The complex of the Gq-biased ligand-AT1R overcame two energy barriers with an intermediate state during dissociation, whereas that of β-arr-biased ligand–AT1R complex overcame one energy barrier. This indicated that AT1R had different ligand-binding conformational substates and underwent different structural changes to activate downstream signaling pathways with variable agonist efficacies. Quantitative analysis of AT1R-ligand binding in living cells at the single-molecule level offers a new tool to study the molecular mechanism of AT1R biased activation. Graphical Abstract Single-molecule force measurement on the living cell expressing AT1R-eGFP with a ligand modified AFM tip (left), the dynamic force spectra of β-arrestin biased ligands-AT1R (middle), and Gq-biased ligands-AT1R (right). The complexes of β-arr-biased ligand-AT1R overcame one energy barrier, with one linear region in the spectra, whereas the Gq-biased ligand-AT1R complexes overcame two energy barriers with two linear regions.
机译:血管紧张素II型1受体(AT1R),一种典型的G蛋白偶联受体,在调节许多心血管功能方面发挥关键作用。不同的配体可以与AT1R结合,以选择性地激活G蛋白(GQ)或β-Arcket(β-Arr)途径,或两种途径,但分子机制尚不清楚。在这项工作中,我们使用的是,首次使用基于原子力显微镜的单分子力光谱(SMF),以研究AT1R与三种类型的配体,平衡配体,GQ偏叠配体的相互作用,以及β-ARR偏置的活细胞中的配体。结果显示了它们对结合力和结合稳定性的差异。 GQ偏置配体-AT1R的复合物在解离期间用中间状态克服两个能量屏障,而β-Arr偏置的配体-AT1R复合物覆盖一个能量屏障。这表明AT1R具有不同的配体结合构象变化物,并且接受不同的结构变化,以激活具有可变激动剂效率的下游信号传导途径。在单分子水平的活细胞中at1R-配体结合的定量分析提供了研究AT1R偏置活化的分子机制的新工具。图形摘要在用配体改性AFM尖端(左),用配体改性的AFM尖端(左),β-Arcket偏向配体-AT1R(中间)和GQ偏置配体-AT1R(右)。 β-arr偏置配体-AT1R的复合物克服一个能量屏障,在光谱中具有一个线性区域,而GQ偏置配体-AT1R复合物覆盖具有两个线性区域的两个能量屏障。

著录项

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  • 作者单位

    Beijing National Laboratory for Molecular Sciences Key Laboratory of Molecular Nanostructure and Nanotechnology Institute of Chemistry Chinese Academy of Sciences;

    Beijing National Laboratory for Molecular Sciences Key Laboratory of Molecular Nanostructure and Nanotechnology Institute of Chemistry Chinese Academy of Sciences;

    Beijing National Laboratory for Molecular Sciences Key Laboratory of Molecular Nanostructure and Nanotechnology Institute of Chemistry Chinese Academy of Sciences;

    Beijing National Laboratory for Molecular Sciences Key Laboratory of Molecular Nanostructure and Nanotechnology Institute of Chemistry Chinese Academy of Sciences;

    Beijing National Laboratory for Molecular Sciences Key Laboratory of Molecular Nanostructure and Nanotechnology Institute of Chemistry Chinese Academy of Sciences;

    Beijing National Laboratory for Molecular Sciences Key Laboratory of Molecular Nanostructure and Nanotechnology Institute of Chemistry Chinese Academy of Sciences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

    Angiotensin II type 1 receptor; Biased ligands; Atomic force microscopy; Single-molecule force spectroscopy; Energy landscape;

    机译:血管紧张素II型1受体;偏置配体;原子力显微镜;单分子力谱;能量景观;

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