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Histone Methyltransferase MMSET/NSD2 Alters EZH2 Binding and Reprograms the Myeloma Epigenome through Global and Focal Changes in H3K36 and H3K27 Methylation
Author(s) -
Relja Popovic,
Eva Martínez-García,
Ευγενία Γιαννοπούλου,
Quanwei Zhang,
Qingyang Zhang,
Teresa Ezponda,
Mrinal Y. Shah,
Yupeng Zheng,
Christine Will,
Eliza C. Small,
Youjia Hua,
Marinka Bulic,
Yanwen Jiang,
Matteo Carrara,
Raffaele Calogero,
William L. Kath,
Neil L. Kelleher,
Ji-Ping Wang,
Olivier Elemento,
Jonathan D. Licht
Publication year - 2014
Publication title -
plos genetics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.587
H-Index - 233
eISSN - 1553-7404
pISSN - 1553-7390
DOI - 10.1371/journal.pgen.1004566
Subject(s) - ezh2 , histone methyltransferase , biology , histone h3 , epigenome , histone methylation , histone , methyltransferase , chromatin immunoprecipitation , epigenetics , cancer research , epigenomics , chromatin , microbiology and biotechnology , methylation , dna methylation , genetics , promoter , gene expression , gene
Overexpression of the histone methyltransferase MMSET in t(4;14)+ multiple myeloma patients is believed to be the driving factor in the pathogenesis of this subtype of myeloma. MMSET catalyzes dimethylation of lysine 36 on histone H3 (H3K36me2), and its overexpression causes a global increase in H3K36me2, redistributing this mark in a broad, elevated level across the genome. Here, we demonstrate that an increased level of MMSET also induces a global reduction of lysine 27 trimethylation on histone H3 (H3K27me3). Despite the net decrease in H3K27 methylation, specific genomic loci exhibit enhanced recruitment of the EZH2 histone methyltransferase and become hypermethylated on this residue. These effects likely contribute to the myeloma phenotype since MMSET-overexpressing cells displayed increased sensitivity to EZH2 inhibition. Furthermore, we demonstrate that such MMSET-mediated epigenetic changes require a number of functional domains within the protein, including PHD domains that mediate MMSET recruitment to chromatin. In vivo, targeting of MMSET by an inducible shRNA reversed histone methylation changes and led to regression of established tumors in athymic mice. Together, our work elucidates previously unrecognized interplay between MMSET and EZH2 in myeloma oncogenesis and identifies domains to be considered when designing inhibitors of MMSET function.

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