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Single Molecule Analysis of Functionally Asymmetric G Protein-coupled Receptor (GPCR) Oligomers Reveals Diverse Spatial and Structural Assemblies

机译:功能不对称G蛋白偶联受体(GPCR)低聚物的单分子分析揭示了不同的空间和结构组装。

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摘要

Formation of G protein-coupled receptors (GPCRs) into dimers and higher order oligomers represents a key mechanism in pleiotropic signaling, yet how individual protomers function within oligomers remains poorly understood. We present a super-resolution imaging approach, resolving single GPCR molecules to ∼8 nm resolution in functional asymmetric dimers and oligomers using dual-color photoactivatable dyes and localization microscopy (PD-PALM). PD-PALM of two functionally defined mutant luteinizing hormone receptors (LHRs), a ligand-binding deficient receptor (LHRB−) and a signaling-deficient (LHRS−) receptor, which only function via intermolecular cooperation, favored oligomeric over dimeric formation. PD-PALM imaging of trimers and tetramers revealed specific spatial organizations of individual protomers in complexes where the ratiometric composition of LHRB− to LHRS− modulated ligand-induced signal sensitivity. Structural modeling of asymmetric LHR oligomers strongly aligned with PD-PALM-imaged spatial arrangements, identifying multiple possible helix interfaces mediating inter-protomer associations. Our findings reveal that diverse spatial and structural assemblies mediating GPCR oligomerization may acutely fine-tune the cellular signaling profile.
机译:G蛋白偶联受体(GPCRs)形成二聚体和更高阶的寡聚体是多效性信号传导的关键机制,但单个启动子如何在寡聚体中发挥作用仍然知之甚少。我们提出了一种超分辨率成像方法,使用双色可光活化染料和定位显微镜(PD-PALM)将单个GPCR分子解析为功能不对称二聚体和低聚物中的〜8 nm分辨率。两种功能定义的突变黄体生成激素受体(LHRs),配体结合缺陷受体(LHR B-)和信号缺陷(LHR S-)的PD-PALM仅通过分子间合作起作用的受体比二聚体形成更倾向于寡聚体。三聚体和四聚体的PD-PALM成像显示复合物中单个protomer的特定空间组织,其中LHR B-与LHR S-的比例组成调节了配体诱导的信号敏感性。不对称LHR低聚物的结构建模与PD-PALM成像的空间排列高度一致,从而确定了介导protomer关联的多个可能的螺旋界面。我们的研究结果表明介导GPCR寡聚化的各种空间和结构装配可能会微调细胞信号传导配置文件。

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