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Wnt activity defines colon cancer stem cells and is regulated by the microenvironment

Authors :
Jurriaan B. Tuynman
Martin R. Sprick
Matilde Todaro
Joan H. de Jong
Christian Merz
Tijana Borovski
Hans M. Rodermond
Kate Cameron
Felipe De Sousa E Melo
Louis Vermeulen
Dick J. Richel
Jan Paul Medema
Maartje van der Heijden
Giorgio Stassi
Kristel Kemper
Vermeulen, L
De Sousa E Melo, F
van der Heijden, M
Cameron, K
de Jong, JH
Borovski, T
Tuynman, JB
Todaro, M
Merz, C
Rodermond, H
Sprick, MR
Kemper, K
Richel, DJ
Stassi, G
Medema, JP
Oncology
Center of Experimental and Molecular Medicine
Other departments
AII - Amsterdam institute for Infection and Immunity
CCA -Cancer Center Amsterdam
Surgery
Radiotherapy
Source :
Nature cell biology, 12(5), 468-U121. Nature Publishing Group
Publication Year :
2010

Abstract

Despite the presence of mutations in APC or beta-catenin, which are believed to activate the Wnt signalling cascade constitutively, most colorectal cancers show cellular heterogeneity when beta-catenin localization is analysed, indicating a more complex regulation of Wnt signalling. We explored this heterogeneity with a Wnt reporter construct and observed that high Wnt activity functionally designates the colon cancer stem cell (CSC) population. In adenocarcinomas, high activity of the Wnt pathway is observed preferentially in tumour cells located close to stromal myofibroblasts, indicating that Wnt activity and cancer stemness may be regulated by extrinsic cues. In agreement with this notion, myofibroblast-secreted factors, specifically hepatocyte growth factor, activate beta-catenin-dependent transcription and subsequently CSC clonogenicity. More significantly, myofibroblast-secreted factors also restore the CSC phenotype in more differentiated tumour cells both in vitro and in vivo. We therefore propose that stemness of colon cancer cells is in part orchestrated by the microenvironment and is a much more dynamic quality than previously expected that can be defined by high Wnt activity.

Details

Language :
English
ISSN :
14657392
Database :
OpenAIRE
Journal :
Nature cell biology, 12(5), 468-U121. Nature Publishing Group
Accession number :
edsair.doi.dedup.....8a6cf8728b1d7260ac7046cf748b3179