| Literature DB >> 30514810 |
Shane C Wright1,2, Maria Consuelo Alonso Cañizal3,4, Tobias Benkel5, Katharina Simon5, Christian Le Gouill2, Pierre Matricon6, Yoon Namkung7, Viktoria Lukasheva2, Gabriele M König5, Stéphane A Laporte7,8, Jens Carlsson6, Evi Kostenis5, Michel Bouvier2, Gunnar Schulte9, Carsten Hoffmann10,4.
Abstract
Frizzleds (FZDs) are a group of seven transmembrane-spanning (7TM) receptors that belong to class F of the G protein-coupled receptor (GPCR) superfamily. FZDs bind WNT proteins to stimulate diverse signaling cascades involved in embryonic development, stem cell regulation, and adult tissue homeostasis. Frizzled 5 (FZD5) is one of the most studied class F GPCRs that promote the functional inactivation of the β-catenin destruction complex in response to WNTs. However, whether FZDs function as prototypical GPCRs has been heavily debated and, in particular, FZD5 has not been shown to activate heterotrimeric G proteins. Here, we show that FZD5 exhibited a conformational change after the addition of WNT-5A, which is reminiscent of class A and class B GPCR activation. In addition, we performed several live-cell imaging and spectrometric-based approaches, such as dual-color fluorescence recovery after photobleaching (dcFRAP) and resonance energy transfer (RET)-based assays that demonstrated that FZD5 activated Gαq and its downstream effectors upon stimulation with WNT-5A. Together, these findings suggest that FZD5 is a 7TM receptor with a bona fide GPCR activation profile and suggest novel targets for drug discovery in WNT-FZD signaling.Entities:
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Year: 2018 PMID: 30514810 DOI: 10.1126/scisignal.aar5536
Source DB: PubMed Journal: Sci Signal ISSN: 1945-0877 Impact factor: 8.192