Related Experiment Videos
Loss of MDM2 expression in human head and neck squamous cell carcinomas and clinical significance
R Millon1, D Muller, I Schultz
1Laboratoire de Biologie Tumorale, Centre Paul Strauss, 3 rue de la Porte de l'Hôpital, F-67085 - Strasbourg cedex, France.
Abstract:
The transforming potential of the MDM2 oncogene has been attributed to the overproduction of the protein. In order to investigate regulation of MDM2 expression in head and neck squamous cell carcinomas, we analysed MDM2 gene amplification, and mRNA and protein expression in tumour specimens from 62 patients, in cell lines, and in normal epithelium adjacent to tumours or obtained from healthy patients. Additionally, TP53-induced MDM2-P2 transcription was evaluated and compared with TP53 status. MDM2 gene amplification and mRNA over-expression is infrequent, 7 and 9%, respectively. The predominant transcript codes for full-length MDM2 protein (90kD) and the level of alternatively spliced forms is not significant. We show that only 47% of tumours exhibit MDM2 immunostaining in more than one third of the neoplastic cells, and thus more than half of the tumours display no or low levels of MDM2 protein. In contrast, MDM2 protein is always detectable in basal and parabasal cells of morphologically normal epithelium outside the invasively growing tumour, as well as in a normal uvula sample. Similarly, the total amount of MDM2 transcripts analysed by reverse transcriptase-polymerase chain reaction is reduced in tumour samples compared to normal tissues, essentially due to a decrease in P2 transcript levels. The relationship between mutated p53 status and low levels of MDM2 found in cell lines is also observed to a certain extent in primary tumour samples. Overall, there is a high frequency of TP53 mutation and under-expression of MDM2 in the head and neck tumours. Moreover, a significant association of decreased MDM2 expression is observed with advanced tumour stage and 3 years survival.
Insights
Head and neck squamous cell carcinomas often show low MDM2 protein levels, contrary to expectations. This decreased MDM2 expression correlates with advanced tumor stage and reduced survival, suggesting a complex role for MDM2 in these cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- The MDM2 oncogene's transforming potential is often linked to protein overproduction.
- Understanding MDM2 regulation is crucial for head and neck squamous cell carcinomas (HNSCC).
Purpose of the Study:
- To investigate MDM2 gene amplification, mRNA, and protein expression in HNSCC.
- To evaluate TP53-induced MDM2-P2 transcription in relation to TP53 status.
- To determine the correlation between MDM2 expression levels and clinical parameters.
Main Methods:
- Analysis of MDM2 gene amplification, mRNA, and protein in 62 HNSCC patient tumor specimens, cell lines, and normal tissues.
- Evaluation of TP53-induced MDM2-P2 transcription.
- Immunohistochemistry for MDM2 protein expression.
- Reverse transcriptase-polymerase chain reaction (RT-PCR) for MDM2 transcripts.
- Correlation analysis with TP53 status, tumor stage, and survival.
Main Results:
- MDM2 gene amplification and mRNA overexpression were infrequent (7% and 9%).
- Over half of tumors showed no or low MDM2 protein levels, contrasting with detectable levels in normal epithelium.
- MDM2 transcripts, particularly P2 levels, were reduced in tumor samples compared to normal tissues.
- A high frequency of TP53 mutations and MDM2 under-expression was observed in HNSCC.
- Decreased MDM2 expression was significantly associated with advanced tumor stage and poorer 3-year survival.
Conclusions:
- MDM2 overproduction is not the primary mechanism in most HNSCC.
- HNSCC frequently exhibits TP53 mutations and reduced MDM2 expression.
- Under-expression of MDM2 is linked to adverse clinical outcomes in HNSCC, indicating a potential tumor-suppressive role or complex regulatory network.
Related Concept Videos
Abnormal Proliferation
Loss of Tumor Suppressor Gene Functions
When the tumor suppressor genes develop mutations or are lost, cells start growing out of control, leading to cancer. However, a single functional copy of the tumor suppressor gene is enough for the cells to maintain their normal functions and cell...