Cryo-electron microscopy structure of the antidiuretic hormone arginine-vasopressin V2 receptor signaling complex

抗利尿激素精氨酸-加压素V2受体信号复合物的低温电子显微镜结构

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作者:Julien Bous, Hélène Orcel, Nicolas Floquet, Cédric Leyrat, Joséphine Lai-Kee-Him, Gérald Gaibelet, Aurélie Ancelin, Julie Saint-Paul, Stefano Trapani, Maxime Louet, Rémy Sounier, Hélène Déméné, Sébastien Granier, Patrick Bron, Bernard Mouillac

Abstract

The antidiuretic hormone arginine-vasopressin (AVP) forms a signaling complex with the V2 receptor (V2R) and the Gs protein, promoting kidney water reabsorption. Molecular mechanisms underlying activation of this critical G protein-coupled receptor (GPCR) signaling system are still unknown. To fill this gap of knowledge, we report here the cryo-electron microscopy structure of the AVP-V2R-Gs complex. Single-particle analysis revealed the presence of three different states. The two best maps were combined with computational and nuclear magnetic resonance spectroscopy constraints to reconstruct two structures of the ternary complex. These structures differ in AVP and Gs binding modes. They reveal an original receptor-Gs interface in which the Gαs subunit penetrates deep into the active V2R. The structures help to explain how V2R R137H or R137L/C variants can lead to two severe genetic diseases. Our study provides important structural insights into the function of this clinically relevant GPCR signaling complex.

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