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Updated: May 22, 2026

Tumorsphere Derivation and Treatment from Primary Tumor Cells Isolated from Mouse Rhabdomyosarcomas
Published on: September 13, 2019
Low Prevalence of TP53 Mutations and MDM2 Amplifications in Pediatric Rhabdomyosarcoma
Simona Ognjanovic1, Ghyslaine Martel, Carlos Manivel
1Division of Pediatric Epidemiology and Clinical Research, University of Minnesota, 420 Delaware Street SE, MMC 422, Minneapolis, MN 55455, USA.
Abstract:
The tumor suppressor gene TP53 is the most commonly mutated gene in human cancer. The reported prevalence of mutations in rhabdomyosarcoma (RMS) varies widely, with recent larger studies suggesting that TP53 mutations in pediatric RMS may be extremely rare. Overexpression of MDM2 also attenuates p53 function. We have performed TP53 mutation/MDM2 amplification analyses in the largest series analyzed thus far, including DNA isolated from 37 alveolar and 38 embryonal RMS tumor samples obtained from the Cooperative Human Tissue Network (CHTN). Available samples were frozen tumor tissues (N = 48) and histopathology slides. TP53 mutations in exons 4-9 were analyzed by direct sequencing in all samples, and MDM2 amplification analysis was performed by differential PCR on a subset of 22 samples. We found only one sample (1/75, 1.3%) carrying a TP53 mutation at codon 259 (p.D259Y) and no MDM2 amplification. Two SNPs in the TP53 pathway, associated with accelerated tumor onset in germline TP53 mutation carriers, (TP53 SNP72 (rs no. 1042522) and MDM2 SNP309 (rs no. 2279744)), were not found to confer earlier tumor onset. In conclusion, we confirm the extremely low prevalence of TP53 mutations/MDM2 amplifications in pediatric RMS (1.33% and 0%, respectively). The possible inactivation of p53 function by other mechanisms thus remains to be elucidated.
Insights
TP53 mutations and MDM2 amplifications are extremely rare in pediatric rhabdomyosarcoma (RMS), occurring in only 1.3% and 0% of cases, respectively. Further research is needed to understand other mechanisms of p53 pathway inactivation in RMS.
Area of Science:
- Oncology
- Genetics
- Pediatric Cancer Research
Background:
- The TP53 tumor suppressor gene is frequently mutated in human cancers.
- Previous studies report variable TP53 mutation prevalence in rhabdomyosarcoma (RMS).
- MDM2 overexpression can inhibit p53 function.
Purpose of the Study:
- To analyze TP53 mutations and MDM2 amplification in the largest series of pediatric RMS tumors to date.
- To investigate the prevalence of TP53 pathway Single Nucleotide Polymorphisms (SNPs) and their association with tumor onset.
Main Methods:
- Direct sequencing of TP53 exons 4-9 in 75 RMS tumor samples.
- Differential PCR for MDM2 amplification analysis in 22 RMS samples.
- Analysis of TP53 (SNP72) and MDM2 (SNP309) polymorphisms.
Main Results:
- Only one sample (1.3%) exhibited a TP53 mutation (p.D259Y).
- No MDM2 amplification was detected in the analyzed samples.
- TP53 and MDM2 SNPs did not correlate with earlier tumor onset in this cohort.
Conclusions:
- Confirms the extremely low incidence of TP53 mutations (1.33%) and MDM2 amplifications (0%) in pediatric RMS.
- Suggests that alternative mechanisms may be responsible for p53 pathway inactivation in pediatric RMS.
- Highlights the need for further investigation into other pathways affecting p53 function in RMS.
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