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WNT/Frizzled signalling: receptor-ligand selectivity with focus on FZD-G protein signalling and its physiological relevance: IUPHAR Review 3

Journal

BRITISH JOURNAL OF PHARMACOLOGY
Volume 171, Issue 5, Pages 1195-1209

Publisher

WILEY
DOI: 10.1111/bph.12364

Keywords

Frizzled; WNT; heterotrimeric G proteins; GPCR; Dishevelled

Funding

  1. Swedish Medical Research Council [K2008-68P-20810-01-4, K2008-68X-20805-01-4]
  2. Swedish Cancer Society CAN [2008/539, 2011/690]
  3. Karolinska Institutet
  4. KI-NIH Joint PhD program (JPD)
  5. Board of Doctoral Education at Karolinska, Institutet Knut & Alice Wallenberg Foundation [KAW2008.0149]
  6. Signhild Engkvists Foundation
  7. Foundation of the National Board of Health
  8. Foundation of Welfare of Sweden

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The wingless/int1 (WNT)/Frizzled (FZD) signalling pathway controls numerous cellular processes such as proliferation, differentiation, cell-fate decisions, migration and plays a crucial role during embryonic development. Nineteen mammalian WNTs can bind to 10 FZDs thereby activating different downstream pathways such as WNT/-catenin, WNT/planar cell polarity and WNT/Ca2+. However, the mechanisms of signalling specification and the involvement of heterotrimeric G proteins are still unclear. Disturbances in the pathways can lead to various diseases ranging from cancer, inflammatory diseases to metabolic and neurological disorders. Due to the presence of seven-transmembrane segments, evidence for coupling between FZDs and G proteins and substantial structural differences in class A, B or C GPCRs, FZDs were grouped separately in the IUPHAR GPCR database as the class FZD within the superfamily of GPCRs. Recently, important progress has been made pointing to a direct activation of G proteins after WNT stimulation. WNT/FZD and G protein coupling remain to be fully explored, although the basic observation supporting the nature of FZDs as GPCRs is compelling. Because the involvement of different (i) WNTs; (ii) FZDs; and (iii) intracellular binding partners could selectively affect signalling specification, in this review we present the current understanding of receptor/ligand selectivity of FZDs and WNTs. We pinpoint what is known about signalling specification and the physiological relevance of these interactions with special emphasis on FZD-G protein interactions. Linked ArticlesThis article is part of a themed section on Molecular Pharmacology of GPCRs. To view the other articles in this section visit

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