Allosteric modulation of the adenosine A<sub>2A</sub> receptor by cholesterol.

Huang, Shuya Kate; Almurad, Omar; Pejana, Reizel J; Morrison, Zachary A; Pandey, Aditya; Picard, Louis-Philippe; Nitz, Mark; Sljoka, Adnan et al. · Elife · 2022

basic_science · Level V

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Abstract

Cholesterol is a major component of the cell membrane and commonly regulates membrane protein function. Here, we investigate how cholesterol modulates the conformational equilibria and signaling of the adenosine A<sub>2A</sub> receptor (A<sub>2A</sub>R) in reconstituted phospholipid nanodiscs. This model system conveniently excludes possible effects arising from cholesterol-induced phase separation or receptor oligomerization and focuses on the question of allostery. GTP hydrolysis assays show that cholesterol weakly enhances the basal signaling of A<sub>2A</sub>R while decreasing the agonist EC<sub>50</sub>. Fluorine nuclear magnetic resonance (<sup>19</sup>F NMR) spectroscopy shows that this enhancement arises from an increase in the receptor's active state population and a G-protein-bound precoupled state. <sup>19</sup>F NMR of fluorinated cholesterol analogs reveals transient interactions with A<sub>2A</sub>R, indicating a lack of high-affinity binding or direct allosteric modulation. The combined results suggest that the observed allosteric effects are largely indirect and originate from cholesterol-mediated changes in membrane properties, as shown by membrane fluidity measurements and high-pressure NMR.

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