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The FUS::DDIT3 fusion oncoprotein inhibits BAF complex targeting and activity in myxoid liposarcoma

Authors :
Hayley J. Zullow
Akshay Sankar
Davis R. Ingram
Daniel D. Samé Guerra
Andrew R. D’Avino
Clayton K. Collings
Rossana Lazcano
Wei-Lien Wang
Yu Liang
Jun Qi
Alexander J. Lazar
Cigall Kadoch
Source :
Mol Cell
Publication Year :
2022
Publisher :
Elsevier BV, 2022.

Abstract

Mammalian SWI/SNF (mSWI/SNF or BAF) ATP-dependent chromatin remodeling complexes play critical roles in governing genomic architecture and gene expression and are frequently perturbed in human cancers. Transcription factors (TFs), including fusion oncoproteins, can bind to BAF complex surfaces to direct chromatin targeting and accessibility, often activating oncogenic gene loci. Here, we demonstrate that the FUS::DDIT3 fusion oncoprotein hallmark to myxoid liposarcoma (MLPS) inhibits BAF complex-mediated remodeling of adipogenic enhancer sites via sequestration of the adipogenic TF, CEBPB, from the genome. In mesenchymal stem cells, small-molecule inhibition of BAF complex ATPase activity attenuates adipogenesis via failure of BAF-mediated DNA accessibility and gene activation at CEBPB target sites. BAF chromatin occupancy and gene expression profiles of FUS::DDIT3-expressing cell lines and primary tumors exhibit similarity to SMARCB1-deficient tumor types. These data present a mechanism by which a fusion oncoprotein generates a BAF complex loss-of-function phenotype, independent of deleterious subunit mutations.

Details

ISSN :
10972765
Volume :
82
Database :
OpenAIRE
Journal :
Molecular Cell
Accession number :
edsair.doi.dedup.....3d2338e12c222787dcbee36e524543cb