bioRxiv · 10.1101/2022.10.10.511514
Gαs slow conformational transition upon GTP binding and a novel Gαs regulator
Abstract
G proteins are major signaling partners for G protein-coupled receptors (GPCRs). Although stepwise structural changes during GPCR-G protein complex formation and guanosine diphosphate (GDP) release have been reported, no information is available with regard to guanosine triphosphate (GTP) binding. Here, we used a novel Bayesian integrative modeling framework that combines data from hydrogen-deuterium exchange mass spectrometry, tryptophan-induced fluorescence quenching, and metadynamics simulations to derive a kinetic model and atomic-level characterization of stepwise conformational changes incurred by the {beta}2-adrenergic receptor ({beta}2AR)-Gs complex after GDP release and GTP binding. Our data suggest rapid GTP binding and GTP-induced dissociation of Gs from {beta}2AR and G{beta}{gamma}, as opposed to a slow closing of the Gs -helical domain (AHD). Yeast-two-hybrid screening using Gs AHD as bait identified melanoma-associated antigen D2 (MAGE D2) as a novel AHD-binding protein, which was also shown to accelerate the GTP-induced closing of the Gs AHD.
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Ahn, D., Provasi, D., Duc, N. M., Xu, J., Salas-Estrada, L., Spasic, A., Yun, M. W., Kang, J., Gim, D., Lee, J., Filizola, M., Chung, K. Y.. 2022-10-10. Gαs slow conformational transition upon GTP binding and a novel Gαs regulator. https://doi.org/10.1101/2022.10.10.511514
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