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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.
Development (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.
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.
Journal of Immunology (Baltimore, Md. : 1950)|October 2, 2012
The inducible tissue-specific expression of the human IL-3/GM-CSF locus is controlled by a complex array of developmentally regulated enhancersEuan W Baxter, Fabio Mirabella, Sarion R Bowers, et al.
Cell Reports|December 17, 2023
Gene regulatory network analysis predicts cooperating transcription factor regulons required for FLT3-ITD+ AML growthDaniel J L Coleman, Peter Keane, Rosario Luque-Martin, et al.
Biorxiv : the Preprint Server for Biology|July 28, 2023
Gene regulatory network analysis predicts cooperating transcription factor regulons required for FLT3-ITD+ AML growthDaniel J L Coleman, Peter Keane, Rosario Luque-Martin, et al.
Journal of Immunology (Baltimore, Md. : 1950)|September 15, 2017
Integration of Kinase and Calcium Signaling at the Level of Chromatin Underlies Inducible Gene Activation in T CellsRuth Brignall, Pierre Cauchy, Sarah L Bevington, et al.
Cell Reports|September 23, 2014
Identification of a dynamic core transcriptional network in t(8;21) AML that regulates differentiation block and self-renewalAnetta Ptasinska, Salam A Assi, Natalia Martinez-Soria, et al.
Iscience|April 19, 2024
Pharmacological inhibition of RAS overcomes FLT3 inhibitor resistance in FLT3-ITD+ AML through AP-1 and RUNX1Daniel J L Coleman, Peter Keane, Paulynn S Chin, et al.
Nature Communications|February 14, 2024
Leukemic stem cells activate lineage inappropriate signalling pathways to promote their growthSophie G Kellaway, Sandeep Potluri, Peter Keane, et al.
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