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Inactivation of both Rb and p53 pathways in mouse lung epithelial cell lines
A L McDoniels-Silvers1, C R Herzog, F L Tyson
1Department of Pathology, Medical College of Ohio, Toledo, Ohio, USA.
Abstract:
Aberrant expression of key cell cycle regulatory genes is essential for the immortalization and transformation of cells in vitro. We examined 20 mouse lung epithelial cell lines (2 nontumorigenic, 5 nonmetastatic, and 13 metastatic) for mutations or alterations in the expression of key components of the Rb pathway (pRb and p16INK4a) and the p53 pathway (p53 and p19ARF). Seven cell lines had a mutation in exons 5 to 8 of p53. p19ARF was inactivated in the remaining 13 cell lines, primarily by homozygous deletion. Rb expression was present and unaltered in all cell lines, with both phosphorylated and unphosphorylated protein forms detectable. p16INK4a transcripts were undetectable in all cell lines tested except LM1. Loss of p16INK4a expression was a result of homozygous deletion in 11 out of 20 lung cell lines and promoter-exon 1 hypermethylation in 6 out of the remaining 8 cell lines. Other related components that were examined in this study included p21WAF1 and cyclin D1. Compared to normal lung tissue, p21WAF1 expression levels were reduced or undetectable in all cell lines, which did not correlate with loss of p53 function, but did correlate with inactivation of either p53 or p19ARF. Although cyclin D1 expression was variable between cell lines, transcript levels were decreased by at least 50% in the nontumorigenic lines C10 and E10 compared to the tumorigenic cell lines. These results demonstrate mutually exclusive relationships between p53 and p19ARF and between Rb and p16INK4a, but perhaps not between cyclin D1 and p16INK4a, and further describe the nature of involvement of both pathways in mouse lung tumorigenesis.
Insights
Aberrant cell cycle gene expression drives cancer. Mouse lung cells showed mutually exclusive inactivation of p53/p19ARF and Rb/p16INK4a pathways, crucial for tumorigenesis.
Area of Science:
- Molecular biology
- Cancer research
- Cell cycle regulation
Background:
- Aberrant cell cycle gene expression is critical for cancer development.
- The Rb and p53 pathways are key regulators of the cell cycle.
- Understanding alterations in these pathways is vital for cancer research.
Purpose of the Study:
- To investigate mutations and expression changes in Rb and p53 pathway components in mouse lung cancer cell lines.
- To determine the roles of pRb, p16INK4a, p53, and p19ARF in mouse lung tumorigenesis.
Main Methods:
- Analysis of 20 mouse lung epithelial cell lines (varying in tumorigenicity and metastatic potential).
- Examination of mutations and gene expression alterations in p53, p19ARF, pRb, and p16INK4a.
- Assessment of p21WAF1 and cyclin D1 expression levels.
Main Results:
- Mutations in p53 were found in 7 cell lines.
- p19ARF was inactivated in 13 cell lines, primarily via homozygous deletion.
- Loss of p16INK4a expression occurred through homozygous deletion or promoter hypermethylation in 17 cell lines.
- p21WAF1 levels were reduced in all cell lines, correlating with p53/p19ARF inactivation.
- Nontumorigenic cell lines showed decreased cyclin D1 expression compared to tumorigenic lines.
Conclusions:
- Mutually exclusive inactivation was observed between the p53 and p19ARF pathways.
- Mutually exclusive inactivation was observed between the Rb and p16INK4a pathways.
- These findings elucidate the complex involvement of cell cycle regulatory pathways in mouse lung cancer.