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Regulation of the Flt3 Gene in Haematopoietic Stem and Early Progenitor Cells

The MYB transcription factor plays critical roles in normal and malignant haematopoiesis. We previously showed that MYB was a direct activator of FLT3 expression within the context of acute myeloid leukaemia. During normal haematopoiesis, increasing levels of FLT3 expression determine a strict hiera...

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Autores principales: Volpe, Giacomo, Clarke, Mary, Garcìa, Paloma, Walton, David Scott, Vegiopoulos, Alexandros, Del Pozzo, Walter, O’Neill, Laura Patricia, Frampton, Jonathan, Dumon, Stéphanie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4575200/
https://www.ncbi.nlm.nih.gov/pubmed/26382271
http://dx.doi.org/10.1371/journal.pone.0138257
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author Volpe, Giacomo
Clarke, Mary
Garcìa, Paloma
Walton, David Scott
Vegiopoulos, Alexandros
Del Pozzo, Walter
O’Neill, Laura Patricia
Frampton, Jonathan
Dumon, Stéphanie
author_facet Volpe, Giacomo
Clarke, Mary
Garcìa, Paloma
Walton, David Scott
Vegiopoulos, Alexandros
Del Pozzo, Walter
O’Neill, Laura Patricia
Frampton, Jonathan
Dumon, Stéphanie
author_sort Volpe, Giacomo
collection PubMed
description The MYB transcription factor plays critical roles in normal and malignant haematopoiesis. We previously showed that MYB was a direct activator of FLT3 expression within the context of acute myeloid leukaemia. During normal haematopoiesis, increasing levels of FLT3 expression determine a strict hierarchy within the haematopoietic stem and early progenitor compartment, which associates with lymphoid and myeloid commitment potential. We use the conditional deletion of the Myb gene to investigate the influence of MYB in Flt3 transcriptional regulation within the haematopoietic stem cell (HSC) hierarchy. In accordance with previous report, in vivo deletion of Myb resulted in rapid biased differentiation of HSC with concomitant loss of proliferation capacity. We find that loss of MYB activity also coincided with decreased FLT3 expression. At the chromatin level, the Flt3 promoter is primed in immature HSC, but occupancy of further intronic elements determines expression. Binding to these locations, MYB and C/EBPα need functional cooperation to activate transcription of the locus. This cooperation is cell context dependent and indicates that MYB and C/EBPα activities are inter-dependent in controlling Flt3 expression to influence lineage commitment of multipotential progenitors.
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spelling pubmed-45752002015-09-25 Regulation of the Flt3 Gene in Haematopoietic Stem and Early Progenitor Cells Volpe, Giacomo Clarke, Mary Garcìa, Paloma Walton, David Scott Vegiopoulos, Alexandros Del Pozzo, Walter O’Neill, Laura Patricia Frampton, Jonathan Dumon, Stéphanie PLoS One Research Article The MYB transcription factor plays critical roles in normal and malignant haematopoiesis. We previously showed that MYB was a direct activator of FLT3 expression within the context of acute myeloid leukaemia. During normal haematopoiesis, increasing levels of FLT3 expression determine a strict hierarchy within the haematopoietic stem and early progenitor compartment, which associates with lymphoid and myeloid commitment potential. We use the conditional deletion of the Myb gene to investigate the influence of MYB in Flt3 transcriptional regulation within the haematopoietic stem cell (HSC) hierarchy. In accordance with previous report, in vivo deletion of Myb resulted in rapid biased differentiation of HSC with concomitant loss of proliferation capacity. We find that loss of MYB activity also coincided with decreased FLT3 expression. At the chromatin level, the Flt3 promoter is primed in immature HSC, but occupancy of further intronic elements determines expression. Binding to these locations, MYB and C/EBPα need functional cooperation to activate transcription of the locus. This cooperation is cell context dependent and indicates that MYB and C/EBPα activities are inter-dependent in controlling Flt3 expression to influence lineage commitment of multipotential progenitors. Public Library of Science 2015-09-18 /pmc/articles/PMC4575200/ /pubmed/26382271 http://dx.doi.org/10.1371/journal.pone.0138257 Text en © 2015 Volpe et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Volpe, Giacomo
Clarke, Mary
Garcìa, Paloma
Walton, David Scott
Vegiopoulos, Alexandros
Del Pozzo, Walter
O’Neill, Laura Patricia
Frampton, Jonathan
Dumon, Stéphanie
Regulation of the Flt3 Gene in Haematopoietic Stem and Early Progenitor Cells
title Regulation of the Flt3 Gene in Haematopoietic Stem and Early Progenitor Cells
title_full Regulation of the Flt3 Gene in Haematopoietic Stem and Early Progenitor Cells
title_fullStr Regulation of the Flt3 Gene in Haematopoietic Stem and Early Progenitor Cells
title_full_unstemmed Regulation of the Flt3 Gene in Haematopoietic Stem and Early Progenitor Cells
title_short Regulation of the Flt3 Gene in Haematopoietic Stem and Early Progenitor Cells
title_sort regulation of the flt3 gene in haematopoietic stem and early progenitor cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4575200/
https://www.ncbi.nlm.nih.gov/pubmed/26382271
http://dx.doi.org/10.1371/journal.pone.0138257
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