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Dynamic Monomer-Dimer Transition in Ligand-induced Apelin Receptor Activation

Ji, S.; Wang, W.; Yang, Y.; Xu, P.; Zhang, J.; Zhao, X.; Xi, K.; Zang, S.; Shen, D.; Mao, C.; Shen, Q.; Zhang, Y.

2025-02-23 molecular biology
10.1101/2025.02.19.639188 bioRxiv
Show abstract

G-protein-coupled receptors (GPCRs) are significant signal transducers that exist as monomers and in multiple oligomeric forms. However, molecular mechanism driving their dynamic interconversion to regulate intricate signaling in class A GPCRs remains elusive, compounding our understanding of their related pathophysiological functions. Here, we present a set of 12 assemblies of the apelin receptor (APLNR), including dimeric apo state, agonistic small molecule- or nanobody-bound state of monomeric and dimeric APLNR with and without G-proteins, providing a detailed dynamic view of the monomer-dimer transition. High-resolution cryo-EM structures reveal that different ligands induce varying degrees of pre-dissociation of dimers in the absence of G-protein, with G-protein coupling facilitating the transition from dimeric to monomeric receptor. Functional studies further highlight the critical role of cholesterol clusters in stabilizing the APLNR dimers. These insights enhance our understanding of the dynamic regulation of class A GPCRs across different aggregated forms and advance the rational drug design strategies aimed at selectively modulating of APLNR signaling.

Published in Nature Communications (predicted rank #1) · training set

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