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Pyk2 Inhibition of p53 as an Adaptive and Intrinsic Mechanism Facilitating Cell Proliferation and Survival.

Authors :
Ssang-Taek Lim
Miller, Nichol L. G.
Nam, Ju-Ock
Xiao Lei Chen
Yangmi Lim
Schlaepfer, David D.
Source :
Journal of Biological Chemistry. 1/15/2010, Vol. 285 Issue 3, p1743-1753. 11p.
Publication Year :
2010

Abstract

Pyk2 is a cytoplasmic tyrosine kinase related to focal adhesion kinase (FAK). Compensatory Pyk2 expression occurs upon FAK loss in mice. However, the impact of Pyk2 up-regulation remains unclear. Previous studies showed that nuclear-localized FAK promotes cell proliferation and survival through FAK FERM domain-enhanced p53 tumor suppressor degradation (Lim, S. T., Chen, X. L., Lim, Y., Hanson, D. A., Vo, 1. T., Howerton, K., Larocque, N., Fisher, S. J., Schlaepfer, D. D., and Ilic, D. (2008) Mol. Ce!! 29, 9-22). Here, we show that FAK knockdown triggered p53 activation and G1 cell cycle arrest in human umbilical vein endothelial cells after 4 days. However, by 7 days elevated Pyk2 expression occurred with a reduction in p53 levels and the release of the G1 block under conditions of continued FAK knockdown. To determine whether Pyk2 regulates p53, experiments were performed in FAK-/-p21-/- mouse embryo fibroblasts expressing endogenous Pyk2 and in 1D8 ovarian carcinoma cells expressing both Pyk2 and FAK. In both cell lines, Pyk2 knockdown increased p53 levels and inhibited cell proliferation associated with G1 cell cycle arrest. Pyk2 FERM domain re-expression was sufficient to reduce p53 levels and promote increased BrdUrd incorporation. Pyk2 FERM promoted Mdm2dependent p53 ubiquitination. Pyk2 FERM effects on p53 were blocked by proteasomal inhibition or mutational-inactivation of Pyk2 FERM nuclear localization. Staurosporine stress of 1D8 cells promoted endogenous Pyk2 nuclear accumulation and enhanced Pyk2 binding to p53. Pyk2 knockdown potentiated 1D8 cell death upon staurosporine addition. Moreover, Pyk2 FERM expression in human fibroblasts upon FAK knockdown prevented cisplatin-mediated apoptosis. Our studies demonstrate that nuclear Pyk2 functions to limit p53 levels, thus facilitating cell growth and survival in a kinase-independent manner. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219258
Volume :
285
Issue :
3
Database :
Academic Search Index
Journal :
Journal of Biological Chemistry
Publication Type :
Academic Journal
Accession number :
48778328
Full Text :
https://doi.org/10.1074/jbc.M109.064212