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Updated: Jun 24, 2025

Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
p53 as a Potential Actionable Target in Myxofibrosarcoma: A Molecular and Pathologic Review of a Single-Institute
Roberta Laranga1, Laura Pazzaglia2, Elena Pedrini3
13rd Orthopaedic and Traumatologic Clinic Prevalently Oncologic, IRCCS Istituto Ortopedico Rizzoli, Bologna, Italy.
Abstract:
Myxofibrosarcoma (MFS) is a common adult soft tissue sarcoma characterized by high-local recurrence rate, poorly understood molecular pathogenesis, lack of specific prognostic markers, and effective targeted therapies. To gain further insights into the disease, we analyzed a well-defined group of 133 primary MFS cases. Immunohistochemical (IHC) staining for p53, MET, RET, and RB was performed. Twenty-five cases were analyzed by targeted resequencing of known cancer driver hotspot mutations, whereas 66 and 64 MFSs were examined for the presence of genetic variants in TP53 and MET gene, respectively. All clinical, histologic, immunostaining, and genetic variables were analyzed for their impact on 5-years overall survival (OS) and 5-years event-free survival (EFS). In our series, no grade I tumors relapsed and high grade are related to a positive MET immunostaining (P = .034). Both local recurrence (P = .038) and distal metastases (P = .016) correlated to the presence of "single nucleotide variant (SNV) plus copy number variation (CNV)" in TP53. Multivariate analysis revealed that age (>60 years), metastasis at presentation, and positive IHC-p53 signal are risk factors for a poor OS (P = .003, P = .000, and P = .002), whereas age (>60 years), synchronous metastasis, and tumor size (>10 cm) predict an unfavorable 5-years EFS (P = .011, P = .000, and P = .023). Considering the smaller series (n = 66) that underwent molecular screening, the presence of "SNV+CNV" in TP53 represents a risk factor for a worse 5-years EFS (hazard ratio, 2.5; P = .017). The present series confirms that TP53 is frequently altered in MFS (86.4% of cases), appearing to play an important role in MFS tumorigenesis and being a potentially drugable target. A positive p53 immunostainings is related to a poor diagnosis, and it is the presence of a single nucleotide genetic alterations in TP53 that is essential in conferring MFS an aggressive phenotype, thus supporting the use of molecular profiling in MFS to better define the role of p53 as a prognostic factor.
Insights
Myxofibrosarcoma (MFS) is a soft tissue sarcoma where TP53 gene alterations are common and linked to aggressive disease. Identifying these genetic changes and p53 protein levels can help predict patient outcomes.
Area of Science:
- Oncology
- Molecular Pathology
- Genetics
Background:
- Myxofibrosarcoma (MFS) is a common adult soft tissue sarcoma with high recurrence rates.
- Its molecular pathogenesis, prognostic markers, and targeted therapies remain poorly understood.
Purpose of the Study:
- To investigate the molecular drivers and prognostic factors in a cohort of 133 primary MFS cases.
- To analyze the impact of genetic variants and protein expression on patient survival.
Main Methods:
- Immunohistochemistry (IHC) for p53, MET, RET, and RB.
- Targeted resequencing of cancer driver mutations.
- Genetic analysis of TP53 and MET genes for single nucleotide variants (SNVs) and copy number variations (CNVs).
Main Results:
- TP53 alterations (SNVs and CNVs) correlated with local recurrence and distal metastases.
- Positive IHC-p53 staining, age >60, and metastasis at presentation were risk factors for poor overall survival.
- TP53 alterations were found in 86.4% of MFS cases, indicating a significant role in tumorigenesis.
Conclusions:
- TP53 alterations are frequent in MFS and associated with aggressive phenotypes and poor prognosis.
- Positive p53 immunostaining serves as a poor prognostic indicator.
- Molecular profiling of TP53 may aid in defining its prognostic role and identifying potential therapeutic targets in MFS.
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