Structural basis for lysophosphatidic acid recognition and atypical Gα q coupling by LPAR5
Структурная основа распознавания лизофосфатидной кислоты и нетипичного связывания с Gαq рецептором LPAR5
2026-06-18
SCID: 54.1/uqhc8p4j
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Gαq couplingLPAR5cryo-EM structurelysophosphatidic acid (LPA)noncanonical GPCR–G protein coupling
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Abstract (AI)
Lysophosphatidic acid receptor 5 (LPAR5) is a non-endothelial differentiation gene class A G protein–coupled receptor that regulates neuropathic pain, itch, and cancer progression through coupling to G proteins. Here, we report the cryo-EM structure of LPAR5 bound to 1-oleoyl-lysophosphatidic acid (LPA) in complex with G q at 2.96 Å resolution, revealing a distinct mode of receptor activation and G protein coupling. The phosphate headgroup of LPA forms extensive polar interactions with residues from extracellular loop 2 and transmembrane helices TM5–TM7, while the lipid tail inserts into a deep hydrophobic cavity formed by TM3–TM5. Site-directed mutagenesis confirms the functional importance of these interactions. Remarkably, LPAR5 exhibits a noncanonical G protein coupling mode. Unlike previously reported GPCR–G protein structures in which the Gα C-terminal α5 helix (“wavy hook”) primarily engages TM6, the wavy hook in LPAR5 is positioned toward the intracellular loop 1–helix 8 interface. This configuration is associated with limited TM6 outward displacement and modest rearrangement at the toggle-switch position (6.48). The resulting interface is stabilized by receptor-specific interactions and supported by functional data. Together, these findings reveal an alternative mode of GPCR–G protein coupling and highlight the structural plasticity underlying signaling specificity in LPA receptors.
Key Findings
1
Cryo-EM structure of LPAR5 bound to 1-oleoyl-lysophosphatidic acid (LPA) in complex with Gαq was resolved at 2.96 Å resolution.
2
LPA phosphate headgroup makes extensive polar interactions with extracellular loop 2 and transmembrane helices TM5–TM7, while the lipid tail inserts into a deep hydrophobic cavity formed by TM3–TM5.
3
LPAR5 displays a noncanonical G protein coupling mode where the Gα C-terminal α5 helix (wavy hook) is positioned toward the intracellular loop 1–helix 8 interface instead of primarily engaging TM6.
4
Site-directed mutagenesis confirms the functional importance of the identified ligand–receptor interactions.
5
This atypical coupling correlates with limited TM6 outward displacement and only modest rearrangement at the toggle-switch position (6.48), indicating alternative structural changes stabilize signaling specificity in LPAR5.
Research Object
Lysophosphatidic acid receptor 5 (LPAR5) bound to 1-oleoyl-lysophosphatidic acid (LPA) in complex with Gαq
Research Subject
Structural basis of LPA recognition and the atypical/noncanonical Gαq coupling mode of LPAR5, including ligand–binding interactions, receptor activation features, and the altered Gα C-terminal α5 helix positioning and receptor–G protein interface
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2026-06-18
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