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Stabilization of β-catenin by a Wnt-independent mechanism regulates cardiomyocyte growth.

Authors :
Haq, Syed
Michael, Ashour
Andreucci, Michele
Bhattacharya, Kausik
Dotto, Paolo
Walters, Brian
Woodgett, James
Kilter, Heiko
Force, Thomas
Source :
Proceedings of the National Academy of Sciences of the United States of America. 4/15/2003, Vol. 100 Issue 8, p4610. 6p. 1 Color Photograph, 4 Black and White Photographs, 15 Diagrams, 6 Graphs.
Publication Year :
2003

Abstract

β-Catenin is a transcriptional activator that regulates embryonic development as part of the Wnt pathway and also plays a role in tumorigenesis. The mechanisms leading to Wnt-induced stabilization of β-catenin, which results in its translocation to the nucleus and activation of transcription, have been an area of intense interest. However, it is not clear whether stimuli other than Wnts can lead to important stabilization of β-catenin and, if so, what factors mediate that stabilization and what biologic processes might be regulated. Herein we report that β-catenin is stabilized in cardiomyocytes after these cells have been exposed to hypertrophic stimuli in culture or in vivo. The mechanism by which β-catenin is stabilized is distinctly different from that used by Wnt signaling. Although, as with Wnt signaling, inhibition of glycogen synthase kinase-3 remains central to hypertrophic stimulus-induced stabilization of β-catenin, the mechanism by which this occurs involves the recruitment of activated PKB to the β-catenin-degradation complex. PKB stabilizes the complex and phosphorylates glycogen synthase kinase-3 within the complex, inhibiting its activity directed at β-catenin. Finally, we demonstrate via adenoviral gene transfer that β-catenin is both sufficient to induce growth in cardiomyocytes in culture and in vivo and necessary for hypertrophic stimulus-induced growth. Thus, in these terminally differentiated cells, β-catenin is stabilized by hypertrophic stimuli acting via heterotrimeric G protein-coupled receptors. The stabilization occurs via a unique Wnt-independent mechanism and results in cellular growth. [ABSTRACT FROM AUTHOR]

Subjects

Subjects :
*HEART cells
*CELL growth

Details

Language :
English
ISSN :
00278424
Volume :
100
Issue :
8
Database :
Academic Search Index
Journal :
Proceedings of the National Academy of Sciences of the United States of America
Publication Type :
Academic Journal
Accession number :
9662242
Full Text :
https://doi.org/10.1073/pnas.0835895100