Lipid-mediated dimerization of beta2-adrenergic receptor reveals important clues for cannabinoid receptors.

S Oddi, M Maccarrone, E Dainese

Journal: Cellular and molecular life sciences : CMLS 2008;65(15):2277-9

PMID: 18500446

Abstract

The high-resolution crystal structure of an engineered human beta2-adrenergic receptor has recently been resolved, suggesting a molecular mechanism by which cholesterol may mediate receptor dimerization. Here, we present a critical examination of new structural and functional insights derived from unprecedented preliminary homology modeling of cannabinoid receptors, obtained using the crystal structure of beta2-adrenergic receptor as a template. The structural comparison between the two cannabinoid receptor subtypes and the beta2-adrenergic receptor may be of particular interest, by providing important clues for the elucidation of the structural determinants involved in cholesterol binding. In addition, the implications of G protein coupled receptor dimerization, as well as the role of cholesterol in this process, are briefly discussed.

Address: Department of Biomedical Sciences, University of Teramo, Piazza Aldo Moro 45, Teramo, Italy.
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