Structure of the Adenosine A<sub>1</sub> Receptor Reveals the Basis for Subtype Selectivity.

Glukhova, Alisa; Thal, David M; Nguyen, Anh T; Vecchio, Elizabeth A; Jörg, Manuela; Scammells, Peter J; May, Lauren T; Sexton, Patrick M et al. · Cell · 2017

basic_science · Level V

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Abstract

The adenosine A<sub>1</sub> receptor (A<sub>1</sub>-AR) is a G-protein-coupled receptor that plays a vital role in cardiac, renal, and neuronal processes but remains poorly targeted by current drugs. We determined a 3.2 Å crystal structure of the A<sub>1</sub>-AR bound to the selective covalent antagonist, DU172, and identified striking differences to the previously solved adenosine A<sub>2A</sub> receptor (A<sub>2A</sub>-AR) structure. Mutational and computational analysis of A<sub>1</sub>-AR revealed a distinct conformation of the second extracellular loop and a wider extracellular cavity with a secondary binding pocket that can accommodate orthosteric and allosteric ligands. We propose that conformational differences in these regions, rather than amino-acid divergence, underlie drug selectivity between these adenosine receptor subtypes. Our findings provide a molecular basis for AR subtype selectivity with implications for understanding the mechanisms governing allosteric modulation of these receptors, allowing the design of more selective agents for the treatment of ischemia-reperfusion injury, renal pathologies, and neuropathic pain.

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