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Mdm2 overexpression and p14(ARF) inactivation are two mutually exclusive events in primary human lung tumors
Béatrice Eymin1, Sylvie Gazzeri, Christian Brambilla
1Groupe de Recherche sur le Cancer du Poumon, EA 2021, Equipe INSERM 9924, Institut Albert Bonniot, 38706 La Tronche Cedex, France.
Abstract:
Pathways involving p53 and pRb tumor suppressor genes are frequently deregulated during lung carcinogenesis. Through its location at the interface of these pathways, Mdm2 can modulate the function of both p53 and pRb genes. We have examined here the pattern of expression of Mdm2 in a series of 192 human lung carcinomas of all histological types using both immunohistochemical and Western blot analyses and four distinct antibodies mapping different epitopes onto the Mdm2 protein. Using Immunohistochemistry (IHC), Mdm2 was overexpressed as compared to normal lung in 31% (60 out of 192) of all tumors analysed, whatever their histological types. Western blotting was performed on 28 out of the 192 tumoral samples. Overexpression of p85/90, p74/76 and p57 Mdm2 isoforms was detected in 18% (5 out of 28), 25% (7 out of 28) and 39% (11 out of 28) of the cases respectively. Overall, overexpression of at least one isoform was observed in 14 out of 28 (50%) lung tumors and concomittant overexpression of at least two isoforms in 7 out of 28 (25%) cases. A good concordance (82%) was observed between immunohistochemical and Western blot data. Interestingly, a highly significant inverse relationship was detected between p14(ARF) loss and Mdm2 overexpression either in NSCLC (P=0.0089) or in NE lung tumors (P<0.0001). Furthermore, a Mdm2/p14(ARF) >1 ratio was correlated with a high grade phenotype among NE tumors overexpressing Mdm2 (P=0.0021). Taken together, these data strongly suggest that p14(ARF)and Mdm2 act on common pathway(s) to regulate p53 and/or pRb-dependent or independent functions and that the Mdm2 : p14(ARF) ratio might act as a rheostat in modulating the activity of both proteins.
Insights
Mdm2 protein is overexpressed in 31% of lung cancers, impacting tumor suppressor genes p53 and pRb. Loss of p14ARF correlates with Mdm2 overexpression, suggesting a common pathway in lung carcinogenesis.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Deregulation of tumor suppressor genes p53 and pRb is common in lung cancer.
- Mdm2 protein interacts with and modulates the function of both p53 and pRb.
Purpose of the Study:
- To investigate the expression patterns of Mdm2 in human lung carcinomas.
- To explore the relationship between Mdm2 expression, p14ARF, and clinicopathological features.
Main Methods:
- Analysis of 192 human lung carcinomas using immunohistochemistry (IHC) and Western blot.
- Utilized four distinct antibodies targeting different Mdm2 epitopes.
- Assessed Mdm2 isoforms (p85/90, p74/76, p57) and p14ARF expression.
Main Results:
- Mdm2 overexpression observed in 31% of lung tumors via IHC.
- Western blot detected Mdm2 isoform overexpression in 18-39% of cases, with 50% showing at least one isoform.
- Significant inverse correlation between p14ARF loss and Mdm2 overexpression (P<0.0001).
- Mdm2/p14ARF ratio correlated with high-grade phenotype in neuroendocrine tumors (P=0.0021).
Conclusions:
- Mdm2 and p14ARF likely act on common pathways regulating p53 and/or pRb functions.
- The Mdm2 to p14ARF ratio may serve as a critical regulator of these proteins' activities in lung carcinogenesis.