Mutually Antagonistic Effects of Androgen and Activin in the Regulation of Prostate Cancer Cell Growth
Author(s) -
Jennifer Carey,
Laura M. Sasur,
Hirofumi Kawakubo,
Vandana Gupta,
Benjamin P. Christian,
Paul Bailey,
Shyamala Maheswaran
Publication year - 2003
Publication title -
molecular endocrinology
Language(s) - English
Resource type - Journals
eISSN - 1944-9917
pISSN - 0888-8809
DOI - 10.1210/me.2003-0360
Subject(s) - lncap , biology , activin type 2 receptors , androgen , endocrinology , cell growth , prostate cancer , medicine , androgen receptor , cancer research , tgf beta signaling pathway , cell cycle , transforming growth factor , cell , cancer , biochemistry , hormone , genetics
Activin, a member of the TGFbeta superfamily, is expressed in the prostate and inhibits growth. We demonstrate that the effects of activin and androgen on regulation of prostate cancer cell growth are mutually antagonistic. In the absence of androgen, activin induced apoptosis in the androgen-dependent human prostate cancer cell line LNCaP, an effect suppressed by androgen administration. Although activin by itself did not alter the cell cycle distribution, it potently suppressed androgen- induced progression of cells into S-phase of the cell cycle and thus inhibited androgen-stimulated growth of LNCaP cells. Expression changes in cell cycle regulatory proteins such as Rb, E2F-1, and p27 demonstrated a strong correlation with the mutually antagonistic growth regulatory effects of activin and androgen. The inhibitory effect of activin on growth was independent of serine, serine, valine, serine motif phosphorylation of Smad3. Despite their antagonistic effect on growth, activin and androgen costimulated the expression of prostate-specific antigen through a Smad3-mediated mechanism. These observations indicate the existence of a complex cross talk between activin and androgen signaling in regulation of gene expression and growth of the prostate.
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