Published January 10, 2023 | Version v1
Dataset Open

Allosteric modulation of the adenosine A2A receptor by cholesterol

Description

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 A2A receptor (A2AR) 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 A2AR while decreasing the agonist EC50. Fluorine nuclear magnetic resonance (19F NMR) spectroscopy shows that this enhancement arises from an increase in the receptor's active state population and a G-protein-bound precoupled state. 19F NMR of fluorinated cholesterol analogs reveals transient interactions with A2AR, 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.

Notes

GraphPad Prism and Microsoft Excel

Funding provided by: Canadian Institutes of Health Research
Crossref Funder Registry ID: http://dx.doi.org/10.13039/501100000024
Award Number: MOP-43998

Funding provided by: Japan Science and Technology Agency
Crossref Funder Registry ID: http://dx.doi.org/10.13039/501100002241
Award Number: JPMJCR1402

Funding provided by: Alexander Graham Bell Canada Graduate Scholarship-Doctoral

Funding provided by: CREST
Crossref Funder Registry ID: http://dx.doi.org/10.13039/501100003382
Award Number:

Funding provided by: QEII FE Beamish Graduate Scholarship in Science and Technology

Files

README.txt

Files (211.1 kB)

Additional details

Related works