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Stem Cell Investigation|July 5, 2023
Identification and characterization of enhancer elements controlling cell type-specific and signalling dependent chromatin programming during hematopoietic developmentAlexander Maytum, Ben Edginton-White, Constanze BoniferMethods in Molecular Biology (Clifton, N.J.)|June 10, 2006
In vivo genomic footprinting using LM-PCR methodsHiromi Tagoh, Peter N Cockerill, Constanze BoniferNucleic Acids Research|January 15, 2002
The chicken lysozyme chromatin domain contains a second, widely expressed geneSuyinn Chong, Arthur D Riggs, Constanze BoniferSeminars in Immunology|June 27, 2008
How transcription factors program chromatin--lessons from studies of the regulation of myeloid-specific genesConstanze Bonifer, Maarten Hoogenkamp, Hanna Krysinska, et al.Advances in Experimental Medicine and Biology|March 17, 2017
Runx1 Structure and Function in Blood Cell DevelopmentConstanze Bonifer, Elena Levantini, Valerie Kouskoff, et al.Frontiers in Epigenetics and Epigenomics|November 7, 2024
Regulation of developmentally controlled enhancer activity by extrinsic signals in normal and malignant cells: AP-1 at the centreAlexander Maytum, Nadine Obier, Pierre Cauchy, et al.Cancer Informatics|July 3, 2019
Rewiring of the Transcription Factor Network in Acute Myeloid LeukemiaSalam A Assi, Constanze Bonifer, Peter N CockerillInternational Journal of Hematology|March 10, 2015
The RUNX1-PU.1 axis in the control of hematopoiesisMaria Rosaria Imperato, Pierre Cauchy, Nadine Obier, et al.Haematologica|April 18, 2020
RUNX1-EVI1 disrupts lineage determination and the cell cycle by interfering with RUNX1 and EVI1 driven gene regulatory networksSophie G Kellaway, Peter Keane, Ella Kennett, et al.Nucleic Acids Research|January 13, 2005
Rapid, solid-phase based automated analysis of chromatin structure and transcription factor occupancy in living eukaryotic cellsRichard Ingram, Hiromi Tagoh, Arthur D Riggs, et al.Pageof 12