Inactivation of a G[alpha]s-PKA tumour suppressor pathway in skin stem cells initiates basal-cell carcinogenesis

Genomic alterations in GNAS, the gene coding for the Gαs heterotrimeric G protein, are associated with a large number of human diseases. Here, we explored the role of Gαs on stem cell fate decisions by using the mouse epidermis as a model system. Conditional epidermal deletion of Gnas or repression...

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Veröffentlicht in:Nature cell biology 2015-06, Vol.17 (6), p.793
Hauptverfasser: Iglesias-bartolome, Ramiro, Torres, Daniela, Marone, Romina, Feng, Xiaodong, Martin, Daniel, Simaan, May, Chen, Min, Weinstein, Lee S, Taylor, Susan S, Molinolo, Alfredo A, Gutkind, J Silvio
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Sprache:eng
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Zusammenfassung:Genomic alterations in GNAS, the gene coding for the Gαs heterotrimeric G protein, are associated with a large number of human diseases. Here, we explored the role of Gαs on stem cell fate decisions by using the mouse epidermis as a model system. Conditional epidermal deletion of Gnas or repression of PKA signalling caused a remarkable expansion of the stem cell compartment, resulting in rapid basal-cell carcinoma formation. In contrast, inducible expression of active Gαs in the epidermis caused hair follicle stem cell exhaustion and hair loss. Mechanistically, we found that Gαs -PKA disruption promotes the cell autonomous Sonic Hedgehog pathway stimulation and Hippo signalling inhibition, resulting in the non-canonical activation of GLI and YAP1. Our study highlights an important tumour suppressive function of Gαs -PKA, limiting the proliferation of epithelial stem cells and maintaining proper hair follicle homeostasis. These findings could have broad implications in multiple pathophysiological conditions, including cancer.
ISSN:1465-7392
1476-4679
DOI:10.1038/ncb3164