Cell anchorage regulates apoptosis through the retinoblastoma tumor suppressor/E2F pathway

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Abstract

Epithelial cells are dependent upon adhesion to extracellular matrix for survival. We show that loss of β1 integrin receptor contact with extracellular matrix signals the inhibition of G1 cyclin-dependent kinase activity. This loss of cyclin-dependent kinase activity leads to accumulation of the hypophosphorylated (active) form of the retinoblastoma tumor suppressor protein (Rb). We present evidence that in epithelial cells deprived of matrix contact, the growth suppression signal elicited by hypophosphorylated Rb opposes stimulatory signals from serum growth factors, leading to a cell cycle conflict that triggers apoptosis. This apoptotic pathway is modulated by Bcl-2 through a novel mechanism that regulates Rb phosphorylation. We present evidence that the Rb-dependent apoptotic pathway functions in vivo in the apoptosis of the prostate glandular epithelium following castration.

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Day, M. L., Foster, R. G., Day, K. C., Znao, X., Humphrey, P., Swanson, P., … Dean, D. C. (1997). Cell anchorage regulates apoptosis through the retinoblastoma tumor suppressor/E2F pathway. Journal of Biological Chemistry, 272(13), 8125–8128. https://doi.org/10.1074/jbc.272.13.8125

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