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Formation of a Ternary Complex among NHERF1, β-Arrestin,and Parathyroid Hormone Receptor
Authors:Christoph Klenk  Thorsten Vetter  Alexander Zürn  Jean-Pierre Vilardaga  Peter A Friedman  Bin Wang  Martin J Lohse
Institution:From the Institute of Pharmacology and Toxicology, University of Würzburg, 97078 Würzburg, Germany.;the §Endocrine Unit, Massachusetts General Hospital and Harvard Medical School, Boston, Massachusetts 02114, and ;the Laboratory for G-coupled Protein Receptor Biology, Department of Pharmacology and Chemical Biology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15261
Abstract:β-Arrestins are crucial regulators of G-protein coupled receptor (GPCR) signaling, desensitization, and internalization. Despite the long-standing paradigm that agonist-promoted receptor phosphorylation is required for β-arrestin2 recruitment, emerging evidence suggests that phosphorylation-independent mechanisms play a role in β-arrestin2 recruitment by GPCRs. Several PDZ proteins are known to interact with GPCRs and serve as cytosolic adaptors to modulate receptor signaling and trafficking. Na+/H+ exchange regulatory factors (NHERFs) exert a major role in GPCR signaling. By combining imaging and biochemical and biophysical methods we investigated the interplay among NHERF1, β-arrestin2, and the parathyroid hormone receptor type 1 (PTHR). We show that NHERF1 and β-arrestin2 can independently bind to the PTHR and form a ternary complex in cultured human embryonic kidney cells and Chinese hamster ovary cells. Although NHERF1 interacts constitutively with the PTHR, β-arrestin2 binding is promoted by receptor activation. NHERF1 interacts directly with β-arrestin2 without using the PTHR as an interface. Fluorescence resonance energy transfer studies revealed that the kinetics of PTHR and β-arrestin2 interactions were modulated by NHERF1. These findings suggest a model in which NHERF1 may serve as an adaptor, bringing β-arrestin2 into close proximity to the PTHR, thereby facilitating β-arrestin2 recruitment after receptor activation.
Keywords:Adaptor Proteins  Cyclic AMP (cAMP)  G Protein-coupled Receptor (GPCR)  Peptide Hormones  Protein-Protein Interactions  Signal Transduction  NHERF  PDZ  Arrestin  Parathyroid Hormone Receptor
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