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A role for the dehydrogenase DHRS7 (SDR34C1) in prostate cancer
Julia K Seibert1, Luca Quagliata2, Cristina Quintavalle2
1Division of Molecular and Systems Toxicology, Department of Pharmaceutical Sciences, University of Basel, Klingelbergstrasse 50, CH-4056, Basel, Switzerland.
Abstract:
Several microarray studies of prostate cancer (PCa) samples have suggested altered expression of the "orphan" enzyme short-chain dehydrogenase/reductase DHRS7 (retSDR4, SDR34C1). However, the role of DHRS7 in PCa is largely unknown and the impact of DHRS7 modulation on cancer cell properties has not yet been studied. Here, we investigated DHRS7 expression in normal human prostate and PCa tissue samples at different tumor grade using tissue microarray and immunovisualization. Moreover, we characterized the effects of siRNA-mediated DHRS7 knockdown on the properties of three distinct human prostate cell lines. We found that DHRS7 protein expression decreases alongside tumor grade, as judged by the Gleason level, in PCa tissue samples. The siRNA-mediated knockdown of DHRS7 expression in the human PCa cell lines LNCaP, BPH1, and PC3 significantly increased cell proliferation in LNCaP cells as well as cell migration in all of the investigated cell lines. Furthermore, cell adhesion was decreased upon DHRS7 knockdown in all three cell lines. To begin to understand the mechanisms underlying the effects of DHRS7 depletion, we performed a microarray study with samples from LNCaP cells treated with DHRS7-specific siRNA. Several genes involved in cell proliferation and adhesion pathways were found to be altered in DHRS7-depleted LNCaP cells. Additionally, genes of the BRCA1/2 pathway and the epithelial to mesenchymal transition regulator E-cadherin were altered following DHRS7 knockdown. Based on these results, further research is needed to evaluate the potential role of DHRS7 as a tumor suppressor and whether its loss-of-function promotes PCa progression and metastasis.
Insights
Short-chain dehydrogenase/reductase DHRS7 (retSDR4) expression decreases in prostate cancer (PCa) with higher tumor grade. DHRS7 knockdown increases PCa cell proliferation, migration, and decreases adhesion, suggesting a tumor suppressor role.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Altered expression of short-chain dehydrogenase/reductase DHRS7 (retSDR4) has been observed in prostate cancer (PCa).
- The specific function and impact of DHRS7 modulation in PCa remain largely uncharacterized.
Purpose of the Study:
- To investigate DHRS7 expression in normal and cancerous prostate tissues across different tumor grades.
- To determine the effects of DHRS7 knockdown on the biological properties of human PCa cell lines.
Main Methods:
- Tissue microarray and immunovisualization were used to assess DHRS7 protein levels in PCa tissues.
- siRNA-mediated DHRS7 knockdown was performed in LNCaP, BPH1, and PC3 prostate cancer cell lines.
- Microarray analysis was conducted on DHRS7-depleted LNCaP cells to identify affected molecular pathways.
Main Results:
- DHRS7 protein expression was found to decrease with increasing PCa tumor grade (Gleason level).
- DHRS7 knockdown significantly increased cell proliferation in LNCaP cells and cell migration in all tested cell lines.
- Cell adhesion was reduced in all three PCa cell lines following DHRS7 knockdown.
- Microarray analysis revealed alterations in genes related to cell proliferation, adhesion, BRCA1/2 pathway, and epithelial-to-mesenchymal transition (e.g., E-cadherin).
Conclusions:
- DHRS7 expression inversely correlates with PCa tumor grade.
- Loss of DHRS7 function enhances key cancer cell properties, including proliferation, migration, and reduced adhesion.
- DHRS7 may function as a tumor suppressor in prostate cancer, and its downregulation could contribute to PCa progression and metastasis.
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