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Novel COL4A1-VEGFD gene fusion in myofibroma
Guillaume Dachy1, Sylvie Fraitag2, Boutaina Boulouadnine1
1de Duve Institute, Université Catholique de Louvain, Brussels, Belgium.
Abstract:
Myofibroma is a benign pericytic tumour affecting young children. The presence of multicentric myofibromas defines infantile myofibromatosis (IMF), which is a life-threatening condition when associated with visceral involvement. The disease pathophysiology remains poorly characterized. In this study, we performed deep RNA sequencing on eight myofibroma samples, including two from patients with IMF. We identified five different in-frame gene fusions in six patients, including three previously described fusion transcripts, SRF-CITED1, SRF-ICA1L and MTCH2-FNBP4, and a fusion of unknown significance, FN1-TIMP1. We found a novel COL4A1-VEGFD gene fusion in two cases, one of which also carried a PDGFRB mutation. We observed a robust expression of VEGFD by immunofluorescence on the corresponding tumour sections. Finally, we showed that the COL4A1-VEGFD chimeric protein was processed to mature VEGFD growth factor by proteases, such as the FURIN proprotein convertase. In conclusion, our results unravel a new recurrent gene fusion that leads to VEGFD production under the control of the COL4A1 gene promoter in myofibroma. This fusion is highly reminiscent of the COL1A1-PDGFB oncogene associated with dermatofibrosarcoma protuberans. This work has implications for the diagnosis and, possibly, the treatment of a subset of myofibromas.
Insights
Researchers discovered a new gene fusion, COL4A1-VEGFD, in myofibroma tumors. This finding sheds light on the disease
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Myofibroma is a benign tumor in children.
- Multicentric myofibromatosis (IMF) can be life-threatening, especially with visceral involvement.
- The underlying disease pathophysiology is not well understood.
Purpose of the Study:
- To investigate the genetic underpinnings of myofibroma.
- To identify novel gene fusions in myofibroma samples.
- To understand the role of these fusions in disease development.
Main Methods:
- Deep RNA sequencing of eight myofibroma samples.
- Identification and characterization of gene fusions.
- Immunofluorescence and protein processing analysis.
Main Results:
- Five distinct in-frame gene fusions were identified in six patients.
- A novel COL4A1-VEGFD gene fusion was found in two cases.
- The COL4A1-VEGFD fusion leads to mature VEGFD production.
Conclusions:
- A new recurrent gene fusion, COL4A1-VEGFD, drives VEGFD production in myofibroma.
- This discovery has implications for myofibroma diagnosis and potential treatment.
- The findings provide insights into the molecular mechanisms of myofibroma.
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