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MicroRNA Detection in Prostate Tumors by Quantitative Real-time PCR (qPCR)
Published on: May 16, 2012
Reduction of QM protein expression correlates with tumor grade in prostatic adenocarcinoma
1Department of Pathology, Harper University Hospital and Wayne State University, and Karmanos Cancer Institute, Detroit, MI, USA.
Abstract:
The QM protein is a transcription cofactor inhibiting the activity of AP-1 transcription factors and is also a ribosomal protein participating in protein synthesis. While protein synthesis is known to be increased in many cancers, inhibition of AP-1 activity presumably suppresses development and growth of sex-hormone-regulated tumor cells. The present study is the first report on immunohistochemical data of QM in human prostatic tissues. Paraffin sections of human prostate cancer samples were immunohistochemically stained for QM. The staining scores were analyzed with the clinicopathologic data of the patients. QM protein expression was found in all normal prostate glands adjacent to prostate cancer and in various intraepithelial neoplasia (PIN). In prostate cancer, the staining intensity and stained areas were decreased, compared to the normal glands and PIN lesions; in high-grade tumors only some patches of tumor cells showed positivity. Intense (3+) staining was mostly observed in the Gleason grade three areas (48%) compared to grade 4 and 5 areas (22%), although both low and high-grade tumors showed similar percentages of weakly stained areas. Moreover, staining in prostatic adenocarcinoma was often topographically patchy and varied from negative or weak (1+) to intense (3+). There was an inverse correlation from normal to low-grade tumors and then to high-grade tumors. However, in high-grade tumors, the positive areas were mostly confined to peripheral aspects of tumors and were particularly strong in foci of perineural invasion. This preliminary study suggests that decreased QM expression may be associated with early development of prostate cancer, but later a high level of QM may facilitate progression of the tumors to a more aggressive phenotype.
Insights
QM protein, a transcription cofactor and ribosomal protein, shows decreased expression in early prostate cancer. High QM levels in advanced tumors may drive aggressive phenotypes, suggesting a dual role in cancer progression.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- QM protein functions as a transcription cofactor inhibiting AP-1 and as a ribosomal protein in protein synthesis.
- Increased protein synthesis is common in cancers, while AP-1 inhibition may suppress sex-hormone-regulated tumors.
- Understanding QM's role in prostate cancer is crucial given its dual function.
Purpose of the Study:
- To investigate QM protein expression in human prostate tissues using immunohistochemistry.
- To correlate QM expression levels with clinicopathologic data in prostate cancer patients.
- To elucidate the potential role of QM in prostate cancer development and progression.
Main Methods:
- Immunohistochemical staining for QM protein on paraffin-embedded human prostate cancer tissues.
- Analysis of QM staining scores (intensity and area) in normal glands, PIN, and various grades of prostate cancer.
- Statistical correlation of QM expression with patient clinicopathologic data, including Gleason grade and perineural invasion.
Main Results:
- QM protein was expressed in normal prostate glands and PIN lesions.
- Prostate cancer tissues showed decreased QM staining intensity and area compared to normal tissues.
- High-grade tumors exhibited reduced QM expression, with some exceptions in perineural invasion foci; an inverse correlation was observed from normal to high-grade tumors.
Conclusions:
- Decreased QM expression may be linked to the early stages of prostate cancer development.
- Elevated QM levels in high-grade tumors might promote tumor progression and aggressiveness.
- QM exhibits a complex, potentially dual role in prostate cancer, warranting further investigation.

