Increased TGF-β1-mediated suppression of growth and motility in castrate-resistant prostate cancer cells is consistent with Smad2/3 signaling

被引:29
作者
Miles, Fayth L. [1 ,2 ]
Tung, Navpreet S. [3 ]
Aguiar, Adam A. [1 ,2 ]
Kurtoglu, Senem [1 ,2 ]
Sikes, Robert A. [1 ,2 ]
机构
[1] Univ Delaware, Dept Biol Sci, Lab Canc Ontogeny & Therapeut, Newark, DE USA
[2] Univ Delaware, Ctr Translat Canc Res, Newark, DE USA
[3] Delaware State Univ, Dept Biol, Dover, DE USA
关键词
TGF-ss; 1; prostate cancer; cell cycle regulation; growth; castrate-resistant; androgen-sensitive; motility; invasion; RAT VENTRAL PROSTATE; TGF-BETA RECEPTOR; TRANSFORMING GROWTH-FACTOR-BETA-1; EPITHELIAL-CELLS; PROGRESSION; INSENSITIVITY; EXPRESSION; LNCAP; LOCALIZATION; METASTASIS;
D O I
10.1002/pros.22482
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
BACKGROUND Elevated TGF-beta levels are associated with prostate cancer progression. Although TGF-beta is a tumor suppressor for normal epithelial and early-stage cancer cells, it may act paradoxically as a tumor promoter in more advanced cancers, although its effects are largely cell and context dependent. This study analyzed prostate cancer responses to TGF-beta signaling in an isogenic model of androgen-sensitive and castration-resistant prostate cancer cells. METHODS Phosphorylation and nuclear translocation of Smad2 and Smad3 were analyzed using immunoblotting. Proliferation and cell cycle responses to TGF-beta 1 (5?ng/ml) were assessed using growth assays and flow cytometry for DNA content, as well as Western blot and immunoprecipitation of cell cycle proteins. RESULTS both androgen-sensitive (LNCaP) and castration-resistant (C4-2 and C4-2b) prostate cancer cell lines demonstrated TGF-beta 1-induced phosphorylation and nuclear translocation of Smad2/3 that was robust in metastatic lines. Smad phosphorylation was completely abrogated with inhibition of ALK-5 kinase activity using the kinase inhibitor, Sb-431542. Increased sensitivity to TGF-beta 1-mediated growth inhibition was observed in C4-2 and C4-2b cells, as compared to LNCaP cells. This was paralleled with downregulation of Cyclin D and increased association of p15(Ink4b) or p27(Kip) with CDK's. Additionally, TGF-beta 1 inhibited motility and invasion of metastatic cell lines. CONCLUSIONS TGF-beta-mediated suppression of growth and motility is enhanced in metastatic, castration-resistant prostate cancer cells. Enhanced TGF-beta 1-induced Smad2 and -3 signaling in prostate cancer cells may correlate with tumor suppressive activity. Therefore, the direct effects of TGF-beta 1 on prostate cancer cells post-castration may be anti-tumorigenic and growth-suppressive. Prostate 72:13391350, 2012. (c) 2012 Wiley Periodicals, Inc.
引用
收藏
页码:1339 / 1350
页数:12
相关论文
共 40 条
[21]   The lethal phenotype of cancer: The molecular basis of death due to malignancy [J].
Loberg, Robert D. ;
Bradley, Deborah A. ;
Tomlins, Scott A. ;
Chinnaiyan, M. ;
Pieta, Kenneth J. .
CA-A CANCER JOURNAL FOR CLINICIANS, 2007, 57 (04) :225-241
[22]   TGFβ in cancer [J].
Massague, Joan .
CELL, 2008, 134 (02) :215-230
[23]   The logic of TGFβ signaling [J].
Massague, Joan ;
Gomis, Roger R. .
FEBS LETTERS, 2006, 580 (12) :2811-2820
[24]  
MORTON DM, 1995, CANCER RES, V55, P2596
[25]   Transforming growth factor beta stabilizes p15(INK4B) protein, increases p15(INK4B)-cdk4 complexes, and inhibits cyclin D1 cdk4 association in human mammary epithelial cells [J].
Sandhu, C ;
Garbe, J ;
Bhattacharya, N ;
Daksis, J ;
Pan, CH ;
Yaswen, P ;
Koh, J ;
Slingerland, JM ;
Stampfer, MR .
MOLECULAR AND CELLULAR BIOLOGY, 1997, 17 (05) :2458-2467
[26]   TGFβ influences Myc, Miz-1 and Smad to control the CDK inhibitor p15INK4b [J].
Seoane, J ;
Pouponnot, C ;
Staller, P ;
Schader, M ;
Eilers, M ;
Massagué, J .
NATURE CELL BIOLOGY, 2001, 3 (04) :400-408
[27]   Preoperative plasma levels of transforming growth factor beta1 (TGF-β1) strongly predict progression in patients undergoing radical prostatectomy [J].
Shariat, SF ;
Shalev, M ;
Menesses-Diaz, A ;
Kim, IY ;
Kattan, MW ;
Wheeler, TM ;
Slawin, KM .
JOURNAL OF CLINICAL ONCOLOGY, 2001, 19 (11) :2856-2864
[28]  
Siegel RL, 2021, CA-CANCER J CLIN, V71, P7, DOI [10.3322/caac.21654, 10.3322/caac.21387, 10.3322/caac.21669]
[29]   Androgenic control of transforming growth factor-β signaling in prostate epithelial cells through transcriptional suppression of transforming growth factor-β receptor II [J].
Song, Kyung ;
Wang, Hui ;
Krebs, Tracy L. ;
Kim, Seong-Jin ;
Danielpour, David .
CANCER RESEARCH, 2008, 68 (19) :8173-8182
[30]  
Thalmann GN, 2000, PROSTATE, V44, P91