Abstract
The bimolecular interaction between corticotropin-releasing factor (CRF), a neuropeptide, and its type 1 receptor (CRFR1), a class B G-protein-coupled receptor (GPCR), is crucial for activation of the hypothalamic-pituitary-adrenal axis in response to stress, and has been a target of intense drug design for the treatment of anxiety, depression, and related disorders. As a class B GPCR, CRFR1 contains an N-terminal extracellular domain (ECD) that provides the primary ligand binding determinants. Here we present three crystal structures of the human CRFR1 ECD, one in a ligand-free form and two in distinct CRF-bound states. The CRFR1 ECD adopts the α-β-βα fold observed for other class B GPCR ECDs, but the N-terminal α-helix is significantly shorter and does not contact CRF. CRF adopts a continuous α-helix that docks in a hydrophobic surface of the ECD that is distinct from the peptide-binding site of other class B GPCRs, thereby providing a basis for the specificity of ligand recognition between CRFR1 and other class B GPCRs. The binding of CRF is accompanied by clamp-like conformational changes of two loops of the receptor that anchor the CRF C terminus, including the C-terminal amide group. These structural studies provide a molecular framework for understanding peptide binding and specificity by the CRF receptors as well as a template for designing potent and selective CRFR1 antagonists for therapeutic applications. © 2008 by The American Society for Biochemistry and Molecular Biology, Inc.
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CITATION STYLE
Pioszak, A. A., Parker, N. R., Suino-Powell, K., & Xu, H. E. (2008). Molecular recognition of corticotropin-releasing factor by its G-protein-coupled receptor CRFR1. Journal of Biological Chemistry, 283(47), 32900–32912. https://doi.org/10.1074/jbc.M805749200
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