Focal Area Structural Biology and Biophysics, Biozentrum, University of Basel, 4056 Basel, Switzerland.
Focal Area Structural Biology and Biophysics, Biozentrum, University of Basel, 4056 Basel, Switzerland.
Mol Cell. 2023 Jun 15;83(12):2108-2121.e7. doi: 10.1016/j.molcel.2023.05.002. Epub 2023 May 26.
The two non-visual arrestins, arrestin2 and arrestin3, bind hundreds of GPCRs with different phosphorylation patterns, leading to distinct functional outcomes. Structural information on these interactions is available only for very few GPCRs. Here, we have characterized the interactions between the phosphorylated human CC chemokine receptor 5 (CCR5) and arrestin2. We identified several new CCR5 phosphorylation sites necessary for stable arrestin2 complex formation. Structures of arrestin2 in the apo form and complexes with CCR5 C-terminal phosphopeptides, together with NMR, biochemical, and functional assays, revealed three phosphoresidues in a pXpp motif that are essential for arrestin2 binding and activation. The identified motif appears responsible for robust arrestin2 recruitment in many other GPCRs. An analysis of receptor sequences and available structural and functional information provides hints on the molecular basis of arrestin2/arrestin3 isoform specificity. Our findings demonstrate how multi-site phosphorylation controls GPCR⋅arrestin interactions and provide a framework to probe the intricate details of arrestin signaling.
两种非视觉蛋白 arrestin2 和 arrestin3 可与具有不同磷酸化模式的数百种 G 蛋白偶联受体(GPCR)结合,从而产生不同的功能结果。这些相互作用的结构信息仅可用于极少数 GPCR。在此,我们对磷酸化的人趋化因子受体 5(CCR5)和 arrestin2 之间的相互作用进行了描述。我们鉴定出了几个新的 CCR5 磷酸化位点,这些磷酸化位点对于稳定的 arrestin2 复合物形成是必需的。apo 形式的 arrestin2 结构和与 CCR5 C 末端磷酸肽的复合物,以及 NMR、生化和功能测定结果,揭示了 pXpp 基序中的三个磷酸残基对于 arrestin2 结合和激活是必需的。所鉴定的基序似乎负责在许多其他 GPCR 中募集大量 arrestin2。对受体序列和现有结构和功能信息的分析为 arrestin2/arrestin3 同工型特异性的分子基础提供了线索。我们的发现表明多磷酸化如何控制 GPCR-arrestin 相互作用,并为探究 arrestin 信号转导的复杂细节提供了框架。