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Inhibition of Notch pathway arrests PTEN-deficient advanced prostate cancer by triggering p27-driven cellular senescence

Authors :
Alberto J. Arribas
Abdullah Alajati
Letizia Gnetti
Andrea Alimonti
Hermeto Gerber
Mitko Dimitrov
Ajinkya Revandkar
Maria Luna Perciato
Sandra Pinton
Nicolas Delaleu
Andrea Rinaldi
Marco Losa
Patrick C. Fraering
Emiliano Pasquini
Francesco Bertoni
Alain Nepveu
Alberto Toso
Rocco D'Antuono
Jingjing Chen
Source :
Nature Communications, Vol 7, Iss 1, Pp 1-12 (2016), Nature communications, vol. 7, pp. 13719, Nature Communications, Nature Communications, 7 (1)
Publication Year :
2016
Publisher :
Nature Portfolio, 2016.

Abstract

Activation of NOTCH signalling is associated with advanced prostate cancer and treatment resistance in prostate cancer patients. However, the mechanism that drives NOTCH activation in prostate cancer remains still elusive. Moreover, preclinical evidence of the therapeutic efficacy of NOTCH inhibitors in prostate cancer is lacking. Here, we provide evidence that PTEN loss in prostate tumours upregulates the expression of ADAM17, thereby activating NOTCH signalling. Using prostate conditional inactivation of both Pten and Notch1 along with preclinical trials carried out in Pten-null prostate conditional mouse models, we demonstrate that Pten-deficient prostate tumours are addicted to the NOTCH signalling. Importantly, we find that pharmacological inhibition of γ-secretase promotes growth arrest in both Pten-null and Pten/Trp53-null prostate tumours by triggering cellular senescence. Altogether, our findings describe a novel pro-tumorigenic network that links PTEN loss to ADAM17 and NOTCH signalling, thus providing the rational for the use of γ-secretase inhibitors in advanced prostate cancer patients.<br />Notch signalling is involved in prostate cancer progression and therapeutic resistance. Here, the authors show that loss of PTEN in prostate cancer models results in increased Notch1 cleavage and activation through CUX1-mediated transactivation of ADAM17.

Details

Language :
English
ISSN :
20411723
Volume :
7
Issue :
1
Database :
OpenAIRE
Journal :
Nature Communications
Accession number :
edsair.doi.dedup.....0c9ffecf0c4ef0986b4e64d57668dae3