bioRxiv · 10.1101/2023.08.24.554641
Dysregulation of chromatin via H3K27 methylation underpins differentiation arrest in Isocitrate dehydrogenase-mutant Acute Myeloid Leukaemia.
Abstract
Dysregulation of cellular differentiation is a hallmark of cancer. Isocitrate dehydrogenase (IDH) is commonly mutated multiple cancers including glioma, cholangiocarcinoma, lymphoma and Acute Myeloid Leukaemia (AML). Mutant IDH generates d-2-hydroxyglutarate that inhibits enzymes including Jumonji histone demethylases and TET2. Using primary human IDH2-mutant AML cells as a model, single cell RNA-seq and ATAC-seq, we demonstrated the continuum of cell states during restoration of neutrophilic differentiation to leukaemic progenitors by Enasidenib, a mutant IDH2 inhibitor. In cells which ultimately differentiate, there is co-expression of competing GATA2/RUNX3/SOX4-driven stem-progenitor and pro-differentiation EGR1/JUN/FOS programmes, followed by expression of cell cycle and terminal neutrophil programmes involving CEBP family and SPI1/PU.1. Genes upregulated during differentiation display loss of H3K27me3 in bivalent chromatin but not of H3K4me3, while downregulated genes are enriched for PRC2/EZH2 targets. In contrast to previous reports of a TET2-dependent mechanism for IDH-mutations, we observed only a modest link between promoter DNA CpG methylation and gene expression. For the first time in primary AML, we describe the lifting of differentiation block by de-repression of pro-differentiation genes through modulation of H3K27 demethylation in bivalent chromatin, and thus highlight a novel and important mechanism in how IDH mutations disrupt cell fates in cancer.
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Silveira, D. R., Chatzikyriakou, P., Casares Alaez, P., Mackie, S., Hulks, R., Yavorska, O., Siejka-Zielinska, P., Smith, A., Metzner, M., Usukhbayar, B., Penard-Lacronique, V., Song, C.-X., Gandhi, A. K., Vyas, P., Milne, T., Kriaucionis, S., Hasan, M., Quek, L.. 2023-08-25. Dysregulation of chromatin via H3K27 methylation underpins differentiation arrest in Isocitrate dehydrogenase-mutant Acute Myeloid Leukaemia.. https://doi.org/10.1101/2023.08.24.554641
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