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◇ bioRxiv2026-09-04· cancer biology

Altered chromatin accessibility mediated by somatic cohesin mutations amplifies FLI1-Menin output to promote leukemogenesis

J. Xu, V. Scoca, Y. Chen, Y. A. Zhan, A. Fisher, E.-o. Udoh, S. Fernando, B. Alija, J. Pantazi, V. Sudunagunta, E. Stewart, A. M. D. Galang, M. Williams, G. Bhagat, C. Gebhard, V. Visconte, S. Ondrejka, R. Delwel, M. Hu, R. P. Koche, A. D. Viny

原始摘要(英文原文)· Original abstract
Chromatin architecture governs transcriptional output and cell identity; however, how its disruption promotes leukemic transformation remains incompletely understood. Here, we show that loss of the cohesin subunit STAG2 creates a hyper-accessible chromatin landscape that amplifies FLI1 activity and extends its binding to ectopic loci. Using multi-omic analyses in human AML samples, cell lines, and mouse models, we identify chromatin-dependent co-occupancy of FLI1 and Menin, accompanied by amplification of Menin occupancy at non-canonical loci beyond its HOXA/MEIS1 targets. Therapeutically, the aberrant expansion of Menin binding drives an altered response towards Revumenib and activates interferon response pathways, creating a therapeutic vulnerability to Menin inhibition. Functionally, STAG2/NPM1c co-mutation drives a stem cell-like immunophenotype and a fully penetrant leukemia in vivo. Collectively, these findings define a model in which cohesin loss rewires transcription factor occupancy to amplify oncogenic chromatin programs and expose context-specific therapeutic dependencies.
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Altered chromatin accessibility mediated by somatic cohesin mutations amplifies FLI1-Menin output to promote leukemogenesis — 科研速览 Science Skim