Synovial sarcoma reprograms transcription by GBAF activation of polycomb targets and loss of CBAF enhancers

J Jinxiu Li L Li Li K Kyllie Smith-Fry M Muhammad Zaki Fadlullah L Lara Carroll L Linda Morrison X Xinyi Ge M Mary L. Nelson L Lesley A. Hill (Department of Cellular and Physiological Sciences and Biomedical Research Centre, University of British Columbia, Vancouver, BC, Canada.) Y Yixuan Guo G George Davenport X Xiaoyang Zhang T Torsten O. Nielsen M Martin Hirst T T. Michael Underhill (Department of Cellular and Physiological Sciences and Biomedical Research Centre, University of British Columbia, Vancouver, BC, Canada.) B Bradley R. Cairns K Kevin B. Jones

Abstract

Abstract Synovial sarcoma is a cancer driven by a fusion oncoprotein, SS18::SSX, that links SS18, a subunit of BAF-family chromatin remodeling complexes, to the carboxy terminus of SSX, which avidly binds nucleosomes with the histone post-translational modification H2AK119ub. Here, we show in mice that SS18::SSX expression redistributes non-canonical GBAF complexes broadly to promoters and distal enhancers marked by H2AK119ub, which causes developmental loci to lose H3K27me3 and become transcriptionally active. Canonical BAF containing SS18::SSX abandons its typical binding sites, is largely absent from H2AK119ub-marked sites, and instead distributes narrowly to transcription start sites with PBAF. Disruption of Arid1a or Arid1b (both CBAF-specific) retains synovial sarcoma character, while Smarcb1 (PBAF- and CBAF-specific) or Pbrm1 (PBAF-specific) disruption does not, although all accelerate SS18::SSX-driven tumorigenesis in mice. Thus, the synovial sarcomagenesis mechanism involves SS18::SSX reprogramming transcription positively through GBAF redistribution to activate polycomb-targeted developmental genes, and negatively by loss of normal CBAF localization and function.

Article Details

Volume / Issue Vol. 17, Issue 1
Published December 21, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (17)

J

Jinxiu Li

L

Li Li

K

Kyllie Smith-Fry

M

Muhammad Zaki Fadlullah

L

Lara Carroll

L

Linda Morrison

X

Xinyi Ge

M

Mary L. Nelson

L

Lesley A. Hill

Department of Cellular and Physiological Sciences and Biomedical Research Centre, University of British Columbia, Vancouver, BC, Canada.

Y

Yixuan Guo

G

George Davenport

X

Xiaoyang Zhang

T

Torsten O. Nielsen

M

Martin Hirst

T

T. Michael Underhill

Department of Cellular and Physiological Sciences and Biomedical Research Centre, University of British Columbia, Vancouver, BC, Canada.

B

Bradley R. Cairns

K

Kevin B. Jones