Anionic phospholipids control mechanisms of GPCR-G protein recognition.

Thakur, Naveen; Ray, Arka P; Sharp, Liam; Jin, Beining; Duong, Alexander; Pour, Niloofar Gopal; Obeng, Samuel; Wijesekara, Anuradha V et al. · Nat Commun · 2023

basic_science · Level V

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Abstract

G protein-coupled receptors (GPCRs) are embedded in phospholipids that strongly influence drug-stimulated signaling. Anionic lipids are particularly important for GPCR signaling complex formation, but a mechanism for this role is not understood. Using NMR spectroscopy, we explore the impact of anionic lipids on the function-related conformational equilibria of the human A<sub>2A</sub> adenosine receptor (A<sub>2A</sub>AR) in bilayers containing defined mixtures of zwitterionic and anionic phospholipids. Anionic lipids prime the receptor to form complexes with G proteins through a conformational selection process. Without anionic lipids, signaling complex formation proceeds through a less favorable induced fit mechanism. In computational models, anionic lipids mimic interactions between a G protein and positively charged residues in A<sub>2A</sub>AR at the receptor intracellular surface, stabilizing a pre-activated receptor conformation. Replacing these residues strikingly alters the receptor response to anionic lipids in experiments. High sequence conservation of the same residues among all GPCRs supports a general role for lipid-receptor charge complementarity in signaling.

Medical subject headings