| Literature DB >> 25158935 |
Nina Cabezas-Wallscheid1, Daniel Klimmeck2, Jenny Hansson3, Daniel B Lipka4, Alejandro Reyes3, Qi Wang5, Dieter Weichenhan4, Amelie Lier6, Lisa von Paleske1, Simon Renders1, Peer Wünsche1, Petra Zeisberger1, David Brocks4, Lei Gu7, Carl Herrmann5, Simon Haas8, Marieke A G Essers8, Benedikt Brors9, Roland Eils9, Wolfgang Huber3, Michael D Milsom6, Christoph Plass10, Jeroen Krijgsveld3, Andreas Trumpp11.
Abstract
In this study, we present integrated quantitative proteome, transcriptome, and methylome analyses of hematopoietic stem cells (HSCs) and four multipotent progenitor (MPP) populations. From the characterization of more than 6,000 proteins, 27,000 transcripts, and 15,000 differentially methylated regions (DMRs), we identified coordinated changes associated with early differentiation steps. DMRs show continuous gain or loss of methylation during differentiation, and the overall change in DNA methylation correlates inversely with gene expression at key loci. Our data reveal the differential expression landscape of 493 transcription factors and 682 lncRNAs and highlight specific expression clusters operating in HSCs. We also found an unexpectedly dynamic pattern of transcript isoform regulation, suggesting a critical regulatory role during HSC differentiation, and a cell cycle/DNA repair signature associated with multipotency in MPP2 cells. This study provides a comprehensive genome-wide resource for the functional exploration of molecular, cellular, and epigenetic regulation at the top of the hematopoietic hierarchy.Entities:
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Year: 2014 PMID: 25158935 DOI: 10.1016/j.stem.2014.07.005
Source DB: PubMed Journal: Cell Stem Cell ISSN: 1875-9777 Impact factor: 24.633