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H3K79 methylation profiles define murine and human MLL-AF4 leukemias.

Cancer cell (2008-11-04)
Andrei V Krivtsov, Zhaohui Feng, Madeleine E Lemieux, Joerg Faber, Sridhar Vempati, Amit U Sinha, Xiaobo Xia, Jonathan Jesneck, Adrian P Bracken, Lewis B Silverman, Jeffery L Kutok, Andrew L Kung, Scott A Armstrong
RESUMEN

We created a mouse model wherein conditional expression of an Mll-AF4 fusion oncogene induces B precursor acute lymphoblastic (ALL) or acute myeloid leukemias (AML). Gene expression profile analysis of the ALL cells demonstrated significant overlap with human MLL-rearranged ALL. ChIP-chip analysis demonstrated histone H3 lysine 79 (H3K79) methylation profiles that correlated with Mll-AF4-associated gene expression profiles in murine ALLs and in human MLL-rearranged leukemias. Human MLL-rearranged ALLs could be distinguished from other ALLs by their H3K79 profiles, and suppression of the H3K79 methyltransferase DOT1L inhibited expression of critical MLL-AF4 target genes. We thus demonstrate that ectopic H3K79 methylation is a distinguishing feature of murine and human MLL-AF4 ALLs and is important for maintenance of MLL-AF4-driven gene expression.

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Anticuerpo anti-trimetil-histona H3 (Lys27), Upstate®, from rabbit
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GenomePlex® Whole Genome Amplification (WGA) Kit, Kit for whole genome amplification from a variety of DNA sources including FFPE tissue