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Nuclear p120-catenin contributes to anoikis resistance of Lobular Breast Cancer through Kaiso-dependent Wnt11 expression

Authors :
Patrick W. B. Derksen
Robert A. H. van de Ven
Jeske J. G. van Riel
Ron C. J. Schackmann
Milou Tenhagen
Wouter Meuleman
Source :
Disease Models & Mechanisms.
Publication Year :
2015
Publisher :
The Company of Biologists, 2015.

Abstract

E-cadherin inactivation underpins the progression of invasive lobular breast carcinoma (ILC). In ILC, p120-catenin (p120) translocates to the cytosol where it controls anchorage independence through the Rho-Rock signaling pathway, a key mechanism driving tumor growth and metastasis. We now demonstrate that anchorage-independent ILC cells show an increase in nuclear p120, which results in relief of transcriptional repression by Kaiso. To identify the Kaiso target genes that control anchorage independence we performed genome-wide mRNA profiling on anoikis resistant mouse ILC cells, and identified 29 candidate target genes including the established Kaiso target Wnt11. Our data indicate that anchorage-independent upregulation of Wnt11 in ILC cells is controlled by nuclear p120 through inhibition of Kaiso-mediated transcriptional repression. Finally, we show that Wnt11 promotes activation of RhoA, which causes ILC anoikis resistance. Our findings thereby establish a mechanistic link between E-cadherin loss and subsequent control of Rho-driven anoikis resistance through p120/Kaiso-dependent expression of Wnt11.

Details

ISSN :
17548411 and 17548403
Database :
OpenAIRE
Journal :
Disease Models & Mechanisms
Accession number :
edsair.doi...........ef00d29f43616ba238aad4f524f70f3b