Related Experiment Videos
Hormone-regulated apoptosis results from reentry of differentiated prostate cells onto a defective cell cycle
M Colombel1, C A Olsson, P Y Ng
1Department of Urology, Columbia University, College of Physicians and Surgeons, New York, New York 10032.
Abstract:
Castration initiates extensive apoptosis of the secretory epithelial cells lining the ducts of the rat ventral prostate, resulting in the striking regression of this male sexual accessory tissue. We had previously described the paradox of finding similar cascades of gene activity (c-fos greater than c-myc greater than hsp-70) induced during the early period of ventral prostate regression and during the regrowth of the ventral prostate gland initiated by testosterone replenishment. This common pattern of protooncogene expression during periods of predominant cellular apoptosis or proliferation caused us to examine further the possibility that the two cellular events occur through identical early molecular pathways. In the present study we demonstrate that apoptotic prostate epithelial cells incorporate bromodeoxyuridine into nuclear high-molecular-weight DNA prior to nuclear DNA fragmentation. The DNA synthetic activity occurs in coordination with a massive induction of proliferative cell nuclear antigen, a proliferation marker, in the nuclei of androgen-deprived prostatic epithelial cells. Moreover, this activity is also associated with the increased expression of mRNA encoding p53, a suppressor gene well known as a cell cycle-blocking agent. Our data indicate that quiescent (G0) prostate epithelial cells undergo apoptosis due to two sequential events initiated by testosterone depletion. The first event is the active reentry of these cells into the cell cycle. The second event is the apoptotic destruction resulting from the inability of the differentiated cells to successfully complete this cycle.
Insights
Testosterone depletion triggers prostate epithelial cells to re-enter the cell cycle, leading to apoptosis. This process involves DNA synthesis and cell cycle regulators, even during tissue regression.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- Castration induces ventral prostate regression via apoptosis of secretory epithelial cells.
- Similar gene activity cascades (c-fos, c-myc, hsp-70) were observed during both regression and testosterone-induced regrowth.
- This suggests potentially identical early molecular pathways for apoptosis and proliferation.
Purpose of the Study:
- To investigate the molecular mechanisms underlying prostate epithelial cell apoptosis following testosterone depletion.
- To determine if apoptosis and proliferation share common early molecular pathways.
Main Methods:
- Analysis of bromodeoxyuridine incorporation in apoptotic prostate epithelial cells.
- Assessment of proliferative cell nuclear antigen (PCNA) expression.
- Measurement of p53 mRNA expression.
Main Results:
- Apoptotic prostate epithelial cells incorporate bromodeoxyuridine into DNA before fragmentation.
- A significant induction of PCNA, a proliferation marker, occurs in androgen-deprived cells.
- Increased expression of p53 mRNA, a cell cycle suppressor, is observed.
Conclusions:
- Testosterone depletion initiates apoptosis through two sequential events: cell cycle re-entry and failed cycle completion.
- Quiescent prostate epithelial cells actively re-enter the cell cycle before undergoing apoptotic destruction.
- The study reveals a novel molecular pathway for apoptosis in prostate cancer research.