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
H. Eric Xu, Qingning Yuan, Lihua Zhao, Xin Li, Kai Wang, Zhongliang Xing, Min Zhang, Wen Hu
2026-06-18

Gαq couplingLPAR5cryo-EM structurelysophosphatidic acid (LPA)noncanonical GPCR–G protein coupling
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.
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.

Lysophosphatidic acid receptor 5 (LPAR5) bound to 1-oleoyl-lysophosphatidic acid (LPA) in complex with Gαq

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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H. Eric Xu
Qingning Yuan
Lihua Zhao
Xin Li
Kai Wang
Zhongliang Xing
Min Zhang
Wen Hu
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