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Nucleic Acids Research|January 15, 2002
The chicken lysozyme chromatin domain contains a second, widely expressed geneSuyinn Chong, Arthur D Riggs, Constanze BoniferCritical Reviews in Immunology|March 22, 2005
Mechanisms of transcriptional regulation of the human IL-3/GM-CSF locus by inducible tissue-specific promoters and enhancersPeter N CockerillThe FEBS Journal|April 20, 2011
Structure and function of active chromatin and DNase I hypersensitive sitesPeter N CockerillScience Signaling|April 4, 2008
NFAT is well placed to direct both enhancer looping and domain-wide models of enhancer functionPeter N CockerillThe Yale Journal of Biology and Medicine|December 27, 2016
Receptor Signaling Directs Global Recruitment of Pre-existing Transcription Factors to Inducible ElementsPeter N CockerillDevelopment (Cambridge, England)|November 2, 2016
Cooperative binding of AP-1 and TEAD4 modulates the balance between vascular smooth muscle and hemogenic cell fateNadine Obier, Pierre Cauchy, Salam A Assi, et al.Leukemia|November 5, 2022
Identification and interrogation of the gene regulatory network of CEBPA-double mutant acute myeloid leukemiaAssunta Adamo, Paulynn Chin, Peter Keane, 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.Cell Reports|May 25, 2017
RUNX1-ETO and RUNX1-EVI1 Differentially Reprogram the Chromatin Landscape in t(8;21) and t(3;21) AMLJustin Loke, Salam A Assi, Maria Rosaria Imperato, et al.Pageof 17