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◆ Cellular and Molecular Life Sciences2026-08-26· Transactivation

SRF fusion oncogenes encode constitutively activated chimeric transcription factors in myoid soft tissue tumors

Constance Pirson, Ariane Sablon, Axelle Loriot, Pierre Autin, Koen Braat, Marie Karanian, Cristina R. Antonescu, Franck Tirode, Jean‐Baptiste Demoulin

原始摘要(英文原文)· Original abstract
ABSTRACT SRF fusion genes drive the pathogenesis of muscle-related soft tissue tumors, including subsets of perivascular tumors, inflammatory myofibroblastic tumor, and rhabdomyosarcoma. SRF encodes Serum Response Factor, a well-characterized transcription factor that regulates muscle development. We characterized four fusion genes: SRF::RELA, SRF::FOXO1, SRF::ICA1L, and SRF::PDGFRB. All localized to the nucleus and dimerized through the SRF MADS box. SRF::RELA, SRF::FOXO1, and SRF::ICA1L acted as constitutively active transcription factors independent of canonical cofactors, binding SRF target promoters and driving transcription via the partner transactivation domain (TAD). A cryptic TAD was uncovered in ICA1L. These fusions promoted mesenchymal cell growth and upregulated muscle-related genes in mesenchymal stem cells, recapitulating transcriptional signatures of human tumors. In contrast, SRF::PDGFRB acted through its kinase domain, was imatinib-sensitive, activated STAT1 and stimulated inflammation genes, consistent with its tumor phenotype. SRF fusions thus define a novel family of oncogenes in human myoid soft tissue tumors. Graphical Abstract
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SRF fusion oncogenes encode constitutively activated chimeric transcription factors in myoid soft tissue tumors — 科研速览 Science Skim