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Kinetic analysis of antagonist-occupied adenosine-A3 receptors within membrane microdomains of individual cells provides evidence of receptor dimerization and allosterism

机译:单个细胞膜微区中拮抗剂占据的腺苷A3受体的动力学分析提供了受体二聚化和变构的证据

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摘要

In our previous work, using a fluorescent adenosine-A3 receptor (A3AR) agonist and fluorescence correlation spectroscopy (FCS), we demonstrated high-affinity labeling of the active receptor (R*) conformation. In the current study, we used a fluorescent A3AR antagonist (CA200645) to study the binding characteristics of antagonist-occupied inactive receptor (R) conformations in membrane microdomains of individual cells. FCS analysis of CA200645-occupied A3ARs revealed 2 species, τD2 and τD3, that diffused at 2.29 ± 0.35 and 0.09 ± 0.03 μm2/s, respectively. FCS analysis of a green fluorescent protein (GFP)-tagged A3AR exhibited a single diffusing species (0.105 μm2/s). The binding of CA200645 to τD3 was antagonized by nanomolar concentrations of the A3 antagonist MRS 1220, but not by the agonist NECA (up to 300 nM), consistent with labeling of R. CA200645 normally dissociated slowly from the A3AR, but inclusion of xanthine amine congener (XAC) or VUF 5455 during washout markedly accelerated the reduction in the number of particles exhibiting τD3 characteristics. It is notable that this effect was accompanied by a significant increase in the number of particles with τD2 diffusion. These data show that FCS analysis of ligand-occupied receptors provides a unique means of monitoring ligand A3AR residence times that are significantly reduced as a consequence of allosteric interaction across the dimer interface
机译:在我们以前的工作中,使用荧光腺苷A3受体(A3AR)激动剂和荧光相关光谱(FCS),我们展示了活性受体(R *)构象的高亲和力标记。在当前的研究中,我们使用了荧光A3AR拮抗剂(CA200645),研究了单个细胞膜微区中拮抗剂占据的非活性受体(R)构象的结合特征。对CA200645占用的A3ARs的FCS分析显示,有2种τD2和τD3分别以2.29±0.35和0.09±0.03μm2/ s的速度扩散。带有绿色荧光蛋白(GFP)标签的A3AR的FCS分析显示单个扩散物种(0.105μm2/ s)。纳摩尔浓度的A3拮抗剂MRS 1220拮抗了CA200645与τD3的结合,但激动剂NECA(最高300 nM)却没有拮抗该作用,这与R的标记是一致的。CA200645通常从A3AR上缓慢解离,但包含黄嘌呤胺冲洗过程中的同系物(XAC)或VUF 5455显着加快了呈现τD3特性的颗粒数量的减少。值得注意的是,伴随着τD2扩散的粒子数量显着增加。这些数据表明,配体占据受体的FCS分析提供了一种独特的方法来监测配体A3AR停留时间,由于跨二聚体界面的变构相互作用,该停留时间显着减少

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