4.7 Article

A specific cholesterol binding site is established by the 2.8 Å structure of the human β2-adrenergic receptor

Journal

STRUCTURE
Volume 16, Issue 6, Pages 897-905

Publisher

CELL PRESS
DOI: 10.1016/j.str.2008.05.001

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Funding

  1. NIGMS NIH HHS [U54 GM074961, P50 GM073197, P50 GM073197-04, P50 GM 073197, U54 GM 074961, GM 075915, U54 GM074961-030001] Funding Source: Medline

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The role of cholesterol in eukaryotic membrane protein function has been attributed primarily to an influence on membrane fluidity and curvature. We present the 2.8 angstrom resolution crystal structure of a thermally stabilized human beta(2)-adrenergic receptor bound to cholesterol and the partial inverse agonist timolol. The receptors pack as monomers in an antiparallel association with two distinct cholesterol molecules bound per receptor, but not in the packing interface, thereby indicating a structurally relevant cholesterol-binding site between helices I, II, III, and IV. Thermal stability analysis using isothermal denaturation confirms that a cholesterol analog significantly enhances the stability of the receptor. A consensus motif is defined that predicts cholesterol binding for 44% of human class A receptors, suggesting that specific sterol binding is important to the structure and stability of other G protein-coupled receptors, and that this site may provide a target for therapeutic discovery.

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