Παρασκευή 1 Απριλίου 2016

Leukemogenic MLL-ENL Fusions Induce Alternative Chromatin States to Drive a Functionally Dichotomous Group of Target Genes

Publication date: Available online 31 March 2016
Source:Cell Reports
Author(s): Maria-Paz Garcia-Cuellar, Christian Büttner, Christoph Bartenhagen, Martin Dugas, Robert K. Slany
MLL fusions are leukemogenic transcription factors that enhance transcriptional elongation through modification of chromatin and RNA Pol II. Global transcription rates and chromatin changes accompanying the transformation process induced by MLL-ENL were monitored by nascent RNA-seq and ChIP-seq, revealing 165 direct target genes separated into two distinct clades. ME5 genes bound MLL-ENL at the promoter, relied on DOT1L-mediated histone methylation, and coded preferentially for transcription factors, including many homeobox genes. A distinct ME3 group accumulated MLL-ENL beyond the termination site, was dependent on P-TEFb-mediated phosphorylation of RNA Pol II for transcription, and translated mainly into proteins involved in RNA biology and ribosome assembly. This dichotomy was reflected by a differential sensitivity toward small molecule inhibitors, suggesting the possibility of a combinatorial strategy for treatment of MLL-induced leukemia.

Graphical abstract

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Teaser

In this article, Garcia-Cuellar et al. use nascent RNA and ChIP sequencing to identify genes controlled by the leukemogenic oncoprotein MLL-ENL. Two target gene categories can be classified that differ by the MLL-ENL binding mode used, respective co-factor requirements, and pharmacological sensitivity toward specific inhibitors.


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