Related Experiment Videos
Absence of p51 alteration in human ovarian cancer
H Shinozaki1, A Okamoto, K Shimizu
1Department of Obstetrics and Gynecology, The Jikei University School of Medicine, Minato-ku, Tokyo 105-8461, Japan.
Abstract:
The p51 gene encodes a protein with significant homology to p53, thus, it is a candidate tumor suppressor gene. To investigate the involvement of the p51 gene in human ovarian carcinogenesis, p51 gene alterations were examined in primary ovarian cancers and ovarian cancer cell lines. Mutation analysis of the p51 gene was performed in 40 primary ovarian cancers and 6 ovarian cancer cell lines using the PCR-SSCP and direct sequencing methods. Expression of p51 mRNA was examined in 9 primary ovarian cancers and 5 ovarian cancer cell lines by Northern blot and RT-PCR analyses. No mutations of the p51 gene causing amino acid substitutions or frameshifts were detected in either primary tumors or cancer cell lines by PCR-SSCP analysis of the entire coding region, although several genetic polymorphisms were detected in three samples. Allelic imbalance was detected in 3 of 19 (16%) primary ovarian cancers. No p51 gene expression was detected in 9 primary ovarian cancers and the corresponding normal ovarian tissues by Northern blot and by RT-PCR analyses. One of 5 ovarian cancer cell lines showed p51 gene expression by Northern blot analysis (20%). These results indicated that p51 gene expression was silent in normal ovarian tissues and primary ovarian cancers, and that mutation of the p51 gene does not play a major role in the development of ovarian cancer.
Insights
The p51 gene, a potential tumor suppressor, shows no mutations in ovarian cancers. Its expression is silenced in normal ovarian tissues and tumors, suggesting it doesn't drive ovarian cancer development.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The p51 gene, homologous to p53, is a candidate tumor suppressor gene.
- Investigating p51 gene alterations is crucial for understanding human ovarian carcinogenesis.
Purpose of the Study:
- To examine p51 gene mutations and expression in human ovarian cancers.
- To determine the role of p51 gene alterations in ovarian cancer development.
Main Methods:
- Mutation analysis using PCR-SSCP and direct sequencing in 40 primary ovarian cancers and 6 cell lines.
- mRNA expression analysis via Northern blot and RT-PCR in ovarian tissues and cell lines.
Main Results:
- No mutations causing amino acid substitutions or frameshifts were found in the p51 gene.
- Allelic imbalance was observed in 16% of primary ovarian cancers.
- p51 gene expression was absent in normal ovarian tissues and most primary cancers, with low expression in one cell line.
Conclusions:
- p51 gene mutations do not appear to be a major factor in ovarian cancer development.
- The p51 gene is transcriptionally silenced in normal ovarian tissues and ovarian cancers.
- Further research may explore other regulatory mechanisms of p51 in ovarian carcinogenesis.