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Induction of Mesenchymal-Epithelial Transitions in Sarcoma Cells
Published on: April 7, 2017
MCM4 Is a Novel Biomarker Associated With Genomic Instability, BRCAness Phenotype, and Therapeutic Potentials in
Qi Liu1, Qiyuan Bao1, Yiqi Xu1
1Department of Orthopedics, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Abstract:
Soft-tissue sarcoma (STS) is represented by a heterogeneous group of rare malignancies with various molecular oncogenesis. Therapies targeting DNA repair pathways in STS have achieved minimal progress, potentially due to the lack of molecular biomarker(s) beyond the histology subtype. In this report, we comprehensively analyzed the expression profiles of 100 liposarcomas (LPSs), the most common STS subtype, in comparison with 21 adipose tissues from multiple GEO datasets to identify the potential prognostic and therapeutic biomarker for LPS. Furthermore, we investigated TCGA database, our archived tumor samples, and patient-derived tumor cell cultures (PTCCs) as a validation. We identified a total of 69 common differentially expressed genes (DEGs) among public datasets, with mini-chromosome maintenance protein 4 (MCM4) identified as a novel biomarker correlated with patients' clinical staging and survival outcome. MCM4-high expression LPS was characterized by MCM4 copy number increase, genomic instability, and BRCAness phenotype compared with the MCM4-low expression counterpart. In contrast, the mutational and the immune landscape were minimally different between the two groups. Interestingly, the association of MCM4-high expression with genomic instability and BRCAness were not only validated in LPS samples from our institution (n = 66) but also could be expanded to the pan-sarcoma cohort from TCGA database (n = 263). Surprisingly, based on four sarcoma cell lines and eight PTCCs (three LPS and five other sarcoma), we demonstrated that MCM4 overexpression tumors were therapeutically sensitive to PARP inhibitor (PARPi) and platinum chemotherapy, independent of the histology subtypes. Our study, for the first time, suggested that MCM4 might be a novel prognostic biomarker, associated with dysregulated DNA repair pathways and potential therapeutic vulnerability in STS.
Insights
Mini-chromosome maintenance protein 4 (MCM4) is a novel prognostic biomarker in soft-tissue sarcoma (STS). High MCM4 expression indicates genomic instability and sensitivity to PARP inhibitors and platinum chemotherapy in STS.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Soft-tissue sarcoma (STS) is a rare, heterogeneous cancer with limited targeted therapy options.
- Current therapies for STS often lack specific molecular biomarkers beyond histology, hindering treatment progress.
- DNA repair pathway targeting in STS has shown minimal success, suggesting a need for new biomarkers.
Purpose of the Study:
- To identify novel prognostic and therapeutic biomarkers for liposarcoma (LPS), the most common STS subtype.
- To investigate the role of differentially expressed genes (DEGs) in LPS molecular oncogenesis.
- To explore the therapeutic vulnerability associated with identified biomarkers in STS.
Main Methods:
- Comprehensive analysis of gene expression profiles from public GEO datasets (100 LPS vs. 21 adipose tissues).
- Validation using TCGA database, institutional tumor samples (n=66 LPS), and patient-derived tumor cell cultures (PTCCs).
- Assessment of MCM4 copy number, genomic instability, BRCAness phenotype, mutational landscape, and immune microenvironment.
Main Results:
- Identified 69 common DEGs across public datasets; MCM4 emerged as a novel biomarker.
- MCM4 high expression correlated with clinical staging, poorer survival, increased copy number, genomic instability, and BRCAness phenotype.
- MCM4-overexpressing STS cell lines and PTCCs showed sensitivity to PARP inhibitors and platinum chemotherapy, irrespective of histology.
Conclusions:
- MCM4 is a potential novel prognostic biomarker for STS, linked to DNA repair pathway dysregulation.
- MCM4 overexpression identifies a therapeutic vulnerability to PARP inhibitors and platinum chemotherapy in STS.
- This finding offers a new avenue for targeted therapy development in soft-tissue sarcoma.
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