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Updated: Jun 24, 2026

Oncogenic Gene Fusion Detection Using Anchored Multiplex Polymerase Chain Reaction Followed by Next Generation Sequencing
Published on: July 5, 2019
MiT fusions, TSC1-TSC2 divergence, and stem-like programs reveal distinct origins and vulnerabilities in PEComa
Justine Gantzer1,2, Xiaofan Lu3, Céline Charon-Barra4
1Department of Cancer and Functional Genomics, Institute of Genetics and Molecular and Cellular Biology (IGBMC), CNRS/INSERM/UNISTRA, Illkirch, France. justine.gantzer@chru-strasbourg.fr.
None:
Perivascular epithelioid cell neoplasms (PEComas) are ultra-rare mesenchymal tumors lacking a molecular classification to guide therapy. Here we perform comprehensive multi-omic profiling of an unselected PEComa cohort. We identify frequent MITF rearrangements involving actin gene partners (ACTA2, ACTG1 and ACTB). Anatomical stratification reveals cyclin-dependent kinase module mutations in gynecologic tumors, whereas soft tissue, gastrointestinal, and pelvic tumors lacked mTOR pathway alterations but are enriched for TFE3/MITF rearrangements. Transcriptomic analysis defines four subtypes with distinct lineage programs-melanocytic, mesenchymal, or adipogenic-as well as unique mutational patterns and clinical behaviors. Notably, an aggressive stem-like subtype enriched for TP53/RB1 mutations exhibits high proliferation, activation of embryonic and Hedgehog signaling, immune infiltration, and resistance to mTOR inhibitors, but potential responsiveness to immunotherapy. Single-nucleus RNA sequencing reveals intra-tumoral heterogeneity within this subtype, including divergent inflammatory states. Together, these findings establish a molecular classification framework and identify actionable vulnerabilities in PEComa.
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