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UTX-mediated enhancer and chromatin remodeling suppresses myeloid leukemogenesis through noncatalytic inverse regulation of ETS and GATA programs

Abstract: The histone H3 Lys27-specific demethylase UTX (or KDM6A) is targeted by loss-of-function mutations in multiple cancers. Here, we demonstrate that UTX suppresses myeloid leukemogenesis through noncatalytic functions, a property shared with its catalytically inactive Y-chromosome paralog, UTY (or KDM6C). In keeping with this, we demonstrate concomitant loss/ mutation of KDM6A (UTX) and UTY in multiple human cancers. Mechanistically, global genomic profiling showed only minor changes in H3K27me3 but significant and bidirectional alterations in H3K27ac and chromatin accessibility; a predominant loss of H3K4me1 modifications; alterations in ETS and GATA-factor binding; and altered gene expression after Utx loss. By integrating proteomic and genomic analyses, we link these changes to UTX regulation of ATP-dependent chromatin remodeling, coordination of the COMPASS complex and enhanced pioneering activity of ETS factors during evolution to AML. Collectively, our findings identify a dual role for UTX in suppressing acute myeloid leukemia via repression of oncogenic ETS and upregulation of tumor-suppressive GATA programs.

Otras publicaciones de la misma revista o congreso con autores/as de la Universidad de Cantabria

 Fuente: Nat Genet. 2018 Jun;50(6):883-894

Editorial: Nature Publishing Group

 Año de publicación: 2018

Nº de páginas: 27

Tipo de publicación: Artículo de Revista

 DOI: 10.1038/s41588-018-0114-z

ISSN: 1061-4036,1546-1718

Url de la publicación: https://doi.org/10.1038/s41588-018-0114-z

Autoría

GOZDECKA, MALGORZATA

MEDURI, ESHWAR

MAZAN, MILENA

TZELEPIS, KONSTANTINOS

DUDEK, MONIKA

KNIGHTS, ANDREW J.

PARDO, MERCEDES

YU, LU

CHOUDHARY, JYOTI S.

METZAKOPIAN, EMMANOUIL

IYER, VIVEK

YUN, HAIYANG

BAUTISTA, RUBEN

COLLORD, GRACE

DOVEY, OLIVER

GARYFALLOS, DIMITRIOS A.

BRAEKELEER, ETIENNE DE

KONDO, SAKI