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An elevated bax/bcl-2 ratio corresponds with the onset of prostate epithelial cell apoptosis
1The Department of Urology,The College of Physicians and Surgeons of Columbia University, Atchley Pavilion 11th Floor, 161 Fort Washington Blvd., New York, NY 10032, USA.
Abstract:
The prostate gland in adult male rats is highly dependent on androgenic steroids. Castration initiates the regression of this tissue through a process involving the loss of the vast majority of cells by means of apoptosis. We studied this well characterized in vivo model of apoptosis to evaluate how the expression of two particular gene products, bcl-2 and bax, known to be important for the regulation of apoptosis were affected by castration. An RNase protection assay designed to quantify the levels of bax mRNA showed that this transcript was transiently elevated after castration, reaching a peak in expression at 3 days and declining thereafter. In contrast, bcl-2 mRNA expression was continuously elevated over a period of up to 7 days after castration. The distinct changes in the expression of the mRNAs encoding these two genes were confirmed by an in situ hybridization analysis of regressing rat ventral prostate tissues. The elevation in mRNAs were apparently restricted to the secretory epithelial cells of the gland, the cellular compartment of the tissue most affected by castration. Finally, SDS - PAGE/Western blot analysis of bax and bcl-2 protein expression in the regressing rat prostate gland with bax and bcl-2-specific antibodies showed that the changes in the bax and bcl-2 protein levels were similar and consistent to that found for the mRNAs. In summary, the expression of both bax and bcl-2 gene products are uniquely modulated during castration-induced regression of the rat ventral prostate gland. The changes we observed identify a transient but marked increase in the bax/bcl-2 expression ratio of the tissue that peaks on the second and third days after castration, coinciding with the peak periods of prostate cell apoptosis. These data support previous studies done on in vitro systems wherein it was shown that the bax/bcl-2 ratio determines the apoptotic potential of a cell.
Insights
Castration in male rats triggers programmed cell death (apoptosis) in the prostate. This study reveals that the apoptosis-regulating genes bcl-2 and bax show distinct expression changes, influencing prostate regression.
Area of Science:
- Molecular Biology
- Cell Biology
- Endocrinology
Background:
- Prostate gland regression after castration involves apoptosis.
- Bcl-2 and Bax are key regulators of apoptosis.
- The rat ventral prostate is an established in vivo model for studying apoptosis.
Purpose of the Study:
- To investigate the expression of bcl-2 and bax gene products during castration-induced prostate regression in rats.
- To determine how castration affects the mRNA and protein levels of bcl-2 and bax.
- To correlate changes in bcl-2 and bax expression with the rate of apoptosis in the regressing prostate.
Main Methods:
- RNase protection assay to quantify bax and bcl-2 mRNA levels.
- In situ hybridization to localize mRNA expression in prostate tissue.
- SDS-PAGE/Western blot analysis to assess bax and bcl-2 protein levels.
Main Results:
- Bax mRNA showed transient elevation peaking at 3 days post-castration.
- Bcl-2 mRNA expression was continuously elevated for up to 7 days post-castration.
- Both bax and bcl-2 protein levels mirrored mRNA changes, with a transient increase in the bax/bcl-2 ratio coinciding with peak apoptosis.
Conclusions:
- Castration uniquely modulates bax and bcl-2 gene product expression during rat ventral prostate regression.
- The observed transient increase in the bax/bcl-2 ratio correlates with peak prostate cell apoptosis.
- These findings support the in vitro data suggesting the bax/bcl-2 ratio dictates apoptotic potential.