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Aberration in the expression of the retinoid receptor, RXRalpha, in prostate cancer
Chen Zhong1, Shangxin Yang, Jiapeng Huang
1Department of Pathology, Keck School of Medicine, University of Southern California, Los Angeles, California 90033, USA.
Abstract:
There is ample evidence for a role for retinoids in the development and maturation of prostatic epithelium. In recent experiments with conditional disruption of a specific retinoid receptor, namely, RXRalpha in the prostatic epithelium of the mouse, we observed that a major component of retinoid action in the prostate is indeed mediated by RXRalpha. The results clearly indicated that the inactivation of RXRalpha in the prostate epithelium leads to the development of preneoplastic lesions (Huang et al. Cancer Res 62: 4812-9, 2002). To determine the relation of this finding to human prostate cancer, we examined the expression of RXRalpha protein in human prostate cancer cell lines by western blotting and prostate cancer specimens by immunohistochemistry. Relative to the "normal" prostate epithelial cells, there was approximately two- to nine-fold decrease in the full-length 54 kD RXRalpha protein in each of the seven different prostate cancer cell lines tested. Similarly, while RXRalpha immunostaining was uniformly strong in the nuclei of most of the benign prostatic epithelial cells of the thirteen adenocarcinoma specimens tested, a highly heterogeneous pattern of expression was detected in the malignant epithelium, with some areas with low or no staining, others with mostly cytoplasmic staining, and some with both nuclear and cytoplasmic immunoreactivity. To evaluate the effect of RXRalpha modulation on the biologic properties of prostate cancer cell lines, we used a lentivirus expression system to overexpress RXRalpha in CWR22R prostate cancer cells that basally expressed a marginal level of the receptor. The sorted RXRalpha-transduced cells were compared to the corresponding vector control cells for proliferative and apoptotic properties. A correlation of reduction of cell growth or increased susceptibility to apoptosis with increases in the level of RXRalpha nuclear receptor was demonstrated. These effects were further enhanced when the cell culture medium was supplemented with a retinoid receptor panagonist, 9-cis retinoic acid. Together, these data support the notion that, like in mouse prostate, loss or reduction of RXRalpha activity might be a critical factor in prostate tumorigenesis in humans.
Insights
Retinoid X receptor alpha (RXRalpha) is crucial for prostate health. Reduced RXRalpha levels correlate with prostate cancer development and progression in humans, suggesting its potential as a therapeutic target.
Area of Science:
- Molecular biology
- Oncology
- Cell biology
Background:
- Retinoids play a significant role in prostate epithelium development and maturation.
- Retinoid X receptor alpha (RXRalpha) is a key mediator of retinoid action in the prostate.
- Previous studies showed RXRalpha inactivation in mice leads to preneoplastic prostate lesions.
Purpose of the Study:
- To investigate the role of RXRalpha in human prostate cancer.
- To determine if RXRalpha expression changes in human prostate cancer.
- To assess the impact of modulating RXRalpha on prostate cancer cell behavior.
Main Methods:
- Western blotting and immunohistochemistry to analyze RXRalpha protein expression in human prostate cancer cell lines and tissues.
- Lentivirus-mediated overexpression of RXRalpha in CWR22R prostate cancer cells.
- Assessment of cell proliferation and apoptosis in RXRalpha-overexpressing cells and control cells.
Main Results:
- A significant decrease (two- to nine-fold) in full-length RXRalpha protein was observed in seven human prostate cancer cell lines compared to normal cells.
- Immunohistochemistry revealed heterogeneous RXRalpha expression patterns in malignant prostate epithelium, with reduced nuclear staining and increased cytoplasmic localization.
- Overexpression of RXRalpha in prostate cancer cells reduced cell growth and increased apoptosis, effects potentiated by 9-cis retinoic acid.
Conclusions:
- Loss or reduction of RXRalpha activity is implicated in human prostate tumorigenesis, mirroring findings in mouse models.
- RXRalpha plays a critical role in maintaining normal prostate epithelial cell function.
- Modulation of RXRalpha activity presents a potential therapeutic strategy for prostate cancer.
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