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Updated: Jan 22, 2026

Establishment of a Primary Culture of Patient-derived Soft Tissue Sarcoma
Published on: April 11, 2018
Recurrent DMD Deletions Highlight Specific Role of Dp71 Isoform in Soft-Tissue Sarcomas
Olivier Mauduit1,2,3, Vanessa Delcroix1,4, Tom Lesluyes1,4
1Institut national de la santé et de la recherche médicale (INSERM) U1218, Bergonié Cancer Institute, F-33076 Bordeaux, France.
Abstract:
Soft-tissue sarcomas (STS) are rare tumors whose oncogenesis remains unknown and for which no common therapeutic target has yet been identified. Analysis of 318 STS by CGH array evidenced a frequent deletion affecting the DMD gene (encoding dystrophin isoforms) in 16.5% of STS, including sarcomas with complex genomics, gastrointestinal tumors (GIST), and synovial sarcomas (SS). These deletions are significantly associated with metastatic progression, thus suggesting the role of DMD downregulation in the acquisition of aggressive phenotypes. We observed that targeted deletions of DMD were restricted to the 5' region of the gene, which is responsible for the transcription of Dp427. Analysis of STS tumors and cell lines by RNA sequencing revealed that only the Dp71 isoform was widely expressed. Dp427 depletion had no effect on cell growth or migration. However, Dp71 inhibition by shRNA dramatically reduced the cell proliferation and clonogenicity of three STS cell lines, likely by altering the cell cycle progression through the G2/M-phase. Our work demonstrates that DMD deletions are not restricted to myogenic tumors and could be used as a biomarker for metastatic evolution in STS. Dp71 seems to play an essential role in tumor growth, thus providing a potential target for future STS treatments.
Insights
Frequent deletions of the dystrophin gene (DMD) in soft-tissue sarcomas (STS) are linked to metastasis. Inhibition of the Dp71 isoform significantly reduces tumor cell growth, suggesting Dp71 as a potential therapeutic target for STS.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Soft-tissue sarcomas (STS) are rare cancers with unknown origins and no identified therapeutic targets.
- The dystrophin gene (DMD) encodes crucial protein isoforms, but its role in STS oncogenesis is unclear.
Purpose of the Study:
- To investigate the role of DMD gene deletions in STS development and metastatic progression.
- To identify potential therapeutic targets by examining the function of DMD isoforms in STS.
Main Methods:
- Comparative genomic hybridization (CGH) array analysis of 318 STS tumors.
- RNA sequencing of STS tumors and cell lines.
- Functional studies using shRNA to inhibit Dp71 expression in STS cell lines.
Main Results:
- A 16.5% frequency of DMD deletions was observed in STS, including GIST and SS, associated with metastatic progression.
- Deletions primarily affected the 5' region of DMD, impacting Dp427 transcription, while Dp71 remained widely expressed.
- Dp71 inhibition significantly reduced STS cell proliferation and clonogenicity by disrupting cell cycle progression (G2/M phase).
Conclusions:
- DMD deletions are prevalent in STS beyond myogenic tumors and can serve as a biomarker for metastatic potential.
- The Dp71 isoform plays a critical role in STS tumor growth, representing a promising therapeutic target for future treatments.
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