Structural details of a Class B GPCR-arrestin complex revealed by genetically encoded crosslinkers in living cells

活细胞中遗传编码交联剂揭示的 B 类 GPCR-arrestin 复合物的结构细节

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作者:Yasmin Aydin #, Thore Böttke #, Jordy Homing Lam #, Stefan Ernicke, Anna Fortmann, Maik Tretbar, Barbara Zarzycka, Vsevolod V Gurevich, Vsevolod Katritch, Irene Coin

Abstract

Understanding the molecular basis of arrestin-mediated regulation of GPCRs is critical for deciphering signaling mechanisms and designing functional selectivity. However, structural studies of GPCR-arrestin complexes are hampered by their highly dynamic nature. Here, we dissect the interaction of arrestin-2 (arr2) with the secretin-like parathyroid hormone 1 receptor PTH1R using genetically encoded crosslinking amino acids in live cells. We identify 136 intermolecular proximity points that guide the construction of energy-optimized molecular models for the PTH1R-arr2 complex. Our data reveal flexible receptor elements missing in existing structures, including intracellular loop 3 and the proximal C-tail, and suggest a functional role of a hitherto overlooked positively charged region at the arrestin N-edge. Unbiased MD simulations highlight the stability and dynamic nature of the complex. Our integrative approach yields structural insights into protein-protein complexes in a biologically relevant live-cell environment and provides information inaccessible to classical structural methods, while also revealing the dynamics of the system.

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