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Down-regulation of drs mRNA in human prostate carcinomas
Chul Jang Kim1, Misuzu Shimakage, Ryoji Kushima
1Department of Urology, Shiga University of Medical Science, Otsu, Japan.
Abstract:
We have previously reported that the drs gene has the ability to suppress transformation by v-src and v-K-ras in the rat cell line F2808. We have also shown that the expression of drs mRNA is markedly reduced in a variety of human cancer cell lines, suggesting that down-regulation of drs mRNA is correlated with the development of human cancers. To clarify the role of the drs gene in prostate carcinogenesis, we examined the expression of the drs gene in 3 normal prostate, 13 prostate carcinoma, 5 benign prostate hyperplasia (BPH), and 2 prostatic intraepithelial neoplasia (PIN) tissue specimens by in situ hybridization and in 3 prostate carcinoma cell lines (PC3, LNCaP, and DU145) and 2 BPH tissues by Northern blot analysis. Furthermore, the deletion, and rearrangement of the drs gene were analyzed by Southern blot analysis. The drs mRNA was significantly expressed in normal prostate and BPH tissues, whereas it was markedly down-regulated in prostate carcinoma tissues and prostate carcinoma cell lines. In 2 tissues from PIN, drs mRNA was weakly expressed. There were no differences between prostate carcinoma cell lines and BPH tissues in terms of their banding patterns of Southern blot analysis. These results indicate that down-regulation of drs mRNA is closely correlated with development of prostate carcinoma, suggesting a tumor-suppressor function of the drs gene in this cancer.
Insights
The drs gene, previously known for suppressing cell transformation, shows reduced mRNA levels in prostate cancer. This down-regulation correlates with prostate cancer development, suggesting a tumor-suppressor role for the drs gene.
Area of Science:
- Molecular biology
- Cancer research
- Genetics
Background:
- The drs gene suppresses transformation by v-src and v-K-ras.
- Reduced drs mRNA expression is observed in various human cancer cell lines.
- This suggests a correlation between drs mRNA down-regulation and human cancer development.
Purpose of the Study:
- To investigate the role of the drs gene in prostate carcinogenesis.
- To analyze drs gene expression in normal prostate, benign prostate hyperplasia (BPH), and prostate carcinoma tissues and cell lines.
Main Methods:
- In situ hybridization to examine drs gene expression in tissue specimens.
- Northern blot analysis for drs mRNA expression in cell lines and BPH tissues.
- Southern blot analysis to detect drs gene deletion and rearrangement.
Main Results:
- Significant drs mRNA expression was found in normal prostate and BPH tissues.
- Marked down-regulation of drs mRNA was observed in prostate carcinoma tissues and cell lines.
- Weak drs mRNA expression was detected in prostatic intraepithelial neoplasia (PIN) tissues.
Conclusions:
- Down-regulation of drs mRNA is closely correlated with prostate carcinoma development.
- The drs gene likely functions as a tumor suppressor in prostate cancer.
- Further research into the drs gene's role in prostate carcinogenesis is warranted.