Crystal structure of the α 1B -adrenergic receptor reveals molecular determinants of selective ligand recognition

α-adrenergic receptors (αARs) are G protein-coupled receptors that regulate vital functions of the cardiovascular and nervous systems. The therapeutic potential of αARs, however, is largely unexploited and hampered by the scarcity of subtype-selective ligands. Moreover, several aminergic drugs eithe...

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Veröffentlicht in:Nature communications 2022-01, Vol.13 (1), p.382
Hauptverfasser: Deluigi, Mattia, Morstein, Lena, Schuster, Matthias, Klenk, Christoph, Merklinger, Lisa, Cridge, Riley R, de Zhang, Lazarus A, Klipp, Alexander, Vacca, Santiago, Vaid, Tasneem M, Mittl, Peer R E, Egloff, Pascal, Eberle, Stefanie A, Zerbe, Oliver, Chalmers, David K, Scott, Daniel J, Plückthun, Andreas
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Sprache:eng
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Zusammenfassung:α-adrenergic receptors (αARs) are G protein-coupled receptors that regulate vital functions of the cardiovascular and nervous systems. The therapeutic potential of αARs, however, is largely unexploited and hampered by the scarcity of subtype-selective ligands. Moreover, several aminergic drugs either show off-target binding to αARs or fail to interact with the desired subtype. Here, we report the crystal structure of human α AR bound to the inverse agonist (+)-cyclazosin, enabled by the fusion to a DARPin crystallization chaperone. The α AR structure allows the identification of two unique secondary binding pockets. By structural comparison of α AR with α ARs, and by constructing α AR-α AR chimeras, we identify residues 3.29 and 6.55 as key determinants of ligand selectivity. Our findings provide a basis for discovery of α AR-selective ligands and may guide the optimization of aminergic drugs to prevent off-target binding to αARs, or to elicit a selective interaction with the desired subtype.
ISSN:2041-1723
DOI:10.1038/s41467-021-27911-3