five

Elevated levels of H3K27me3 in Snf5-deficient cells

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https://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE23658
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Epigenetic alterations have been increasingly implicated in oncogenesis. Analysis of Drosophila mutants suggests that Polycomb and SWI/SNF complexes can serve antagonistic developmental roles. However, the relevance of this relationship to human disease is unclear. Here we have investigated functional relationships between these epigenetic regulators in oncogenic transformation. Mechanistically, we show that loss of the SNF5 tumor suppressor leads to elevated expression of the Polycomb gene EZH2 and that Polycomb targets are broadly H3K27-trimethylated and repressed in SNF5-deficient fibroblasts and cancers. Further, we show antagonism between SNF5 and EZH2 in the regulation of stem cell-associated programs and that Snf5 loss activates those programs. Finally, using conditional mouse models, we show that inactivation of Ezh2 blocks tumor formation driven by Snf5 loss. H327me3 ChIP-chip in wild type, Snf5-deficient MEFs, and murine cerebellum. Ezh2 ChIP-chip in wild type and Snf5-deficient MEFs
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2019-08-27
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