BRD9 determines the cell fate of hematopoietic stem cells by regulating chromatin state

Author:

Xiao Muran,Kondo Shinji,Nomura Masaki,Kato Shinichiro,Nishimura Koutarou,Zang Weijia,Zhang Yifan,Akashi Tomohiro,Viny AaronORCID,Shigehiro TsukasaORCID,Ikawa Tomokatsu,Yamazaki Hiromi,Fukumoto Miki,Tanaka AtsushiORCID,Hayashi Yasutaka,Koike Yui,Aoyama Yumi,Ito Hiromi,Nishikawa Hiroyoshi,Kitamura ToshioORCID,Kanai Akinori,Yokoyama AkihikoORCID,Fujiwara Tohru,Goyama SusumuORCID,Noguchi Hideki,Lee Stanley C.ORCID,Toyoda AtsushiORCID,Hinohara Kunihiko,Abdel-Wahab OmarORCID,Inoue DaichiORCID

Abstract

AbstractATP-dependent chromatin remodeling SWI/SNF complexes exist in three subcomplexes: canonical BAF (cBAF), polybromo BAF (PBAF), and a newly described non-canonical BAF (ncBAF). While cBAF and PBAF regulate fates of multiple cell types, roles for ncBAF in hematopoietic stem cells (HSCs) have not been investigated. Motivated by recent discovery of disrupted expression of BRD9, an essential component of ncBAF, in multiple cancers, including clonal hematopoietic disorders, we evaluate here the role of BRD9 in normal and malignant HSCs. BRD9 loss enhances chromatin accessibility, promoting myeloid lineage skewing while impairing B cell development. BRD9 significantly colocalizes with CTCF, whose chromatin recruitment is augmented by BRD9 loss, leading to altered chromatin state and expression of myeloid-related genes within intact topologically associating domains. These data uncover ncBAF as critical for cell fate specification in HSCs via three-dimensional regulation of gene expression and illuminate roles for ncBAF in normal and malignant hematopoiesis.

Funder

Japan Agency for Medical Research and Development

MEXT | Japan Society for the Promotion of Science

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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