ErbB-2 Induces the Cyclin D1 Gene in Prostate Epithelial Cells In vitro and In vivo
Open Access
- 1 May 2007
- journal article
- Published by American Association for Cancer Research (AACR) in Cancer Research
- Vol. 67 (9) , 4364-4372
- https://doi.org/10.1158/0008-5472.can-06-1898
Abstract
The receptor tyrosine kinase ErbB-2 plays an important role in the regulation of growth factor–induced signal transduction cascades in the epithelium, and ErbB-2 is frequently overexpressed in epithelial tumors. Our previous studies on clinical prostate cancer specimens indicated that ErbB-2 expression was increased in patients undergoing hormone ablation therapy. We had also shown that the critical cell cycle regulatory gene cyclin D1 and its promoter were targets of proliferative signaling in prostate cancer cell lines, and that cyclin D1 was required for ErbB-2–induced mammary tumorigenesis. In the current studies, we found that increased ErbB-2 membrane expression correlated with increased nuclear cyclin D1 staining in clinical prostate cancer specimens, and that expression of ErbB-2 was capable of inducing cell cycle progression in human prostate cancer cell lines. We further showed that ErbB-2 induced the cyclin D1 promoter in DU145 cells, and that small interfering RNA knockdown of cyclin D1 protein levels blocked a significant proportion of the heregulin-induced cell cycle progression in LNCaP cells. Probasin promoter–targeted expression of an activated ErbB-2 isoform induced cyclin D1 expression in the mouse prostate, commensurate with prostate intraepithelial neoplasia. Together, these in vitro and in vivo studies identify cyclin D1 as a critical downstream target of ErbB-2 in the prostate epithelium, both of which are possible therapeutic targets for cancer intervention. Furthermore, our novel mouse model provides a useful platform for ongoing in vivo investigations of ErbB-2 signaling in the prostate epithelium. [Cancer Res 2007;67(9):4364–72]Keywords
This publication has 44 references indexed in Scilit:
- In vivo magnetic resonance volumetric and spectroscopic analysis of mouse prostate Cancer ModelsThe Prostate, 2006
- Role of coordinated molecular alterations in the development of androgen-independent prostate cancer: an in vitro model that corroborates clinical observationsBJU International, 2006
- SERUM LEVELS OF SHED HER2/NEU PROTEIN IN MEN WITH PROSTATE CANCER CORRELATE WITH DISEASE PROGRESSIONJournal of Urology, 2005
- Contrast-Enhanced In Vivo Imaging of Breast and Prostate Cancer Cells by MRICell Cycle, 2005
- Bombesin Regulates Cyclin D1 Expression through the Early Growth Response Protein Egr-1 in Prostate Cancer CellsCancer Research, 2005
- Heregulin-Induced Activation of HER2 and HER3 Increases Androgen Receptor Transactivation and CWR-R1 Human Recurrent Prostate Cancer Cell GrowthClinical Cancer Research, 2005
- Evaluation of HER‐2/neu expression in prostatic adenocarcinomaCancer, 2002
- A novel splice variant ofHER2 with increased transformation activityMolecular Carcinogenesis, 1998
- Increased cell growth and tumorigenicity in human prostate LNCaP cells by overexpression to cyclin D1Oncogene, 1998
- ErbB kinases and NDF signaling in human prostate cancer cellsOncogene, 1997