Membrane Mimetic-Dependence of GPCR Energy Landscapes
Thakur, N.; Ray, A.; Lyman, E.; Gao, Z.; Jacobson, K. A.; Eddy, M. T.
Show abstract
Protein function strongly depends on temperature, which is related to temperature-dependent changes in the equilibria of protein conformational states. We leveraged variable-temperature 19F-NMR spectroscopy to interrogate the temperature dependence of the conformational landscape of the human A2A adenosine receptor (A2AAR), a class A GPCR. Temperature-induced changes in the conformational equilibria of A2AAR in lipid nanodiscs were markedly dependent on the efficacy of bound drugs. While antagonist complexes displayed only modest changes as the temperature rose, both full and partial agonist complexes exhibited substantial increases in the active state population. Importantly, the temperature-dependent response of complexes with both full and partial agonists exhibited a pronounced sensitivity to the specific membrane mimetic employed. In striking contrast to observations within lipid nanodiscs, in detergent micelles the active state population exhibited different behavior for A2AAR complexes with both full and partial agonists. This underscores the importance of the protein environment in understanding the thermodynamics of GPCR activation. HighlightsO_LIActive A2AAR population increases with increasing temperature in lipid nanodiscs C_LIO_LIActive A2AAR population exhibits different temperature dependence in detergents C_LIO_LIPartial agonist complexes present a unique conformational state in nanodiscs C_LIO_LITemperature dependence of partial agonist equilibria depends on membrane mimetic C_LI
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