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SCL-mediated regulation of the cell-cycle regulator p21 is critical for murine megakaryopoiesis
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 1194927
Author(s) Chagraoui, Hedia; Kassouf, Mira; Banerjee, Sreemoti; Goardon, Nicolas; Clark, Kevin; Atzberger, Ann; Pearce, Andrew C; Skoda, Radek C; Ferguson, David J P; Watson, Steve P; Vyas, Paresh; Porcher, Catherine
Author(s) at UniBasel Skoda, Radek C.
Year 2011
Title SCL-mediated regulation of the cell-cycle regulator p21 is critical for murine megakaryopoiesis
Journal Blood
Volume 118
Number 3
Pages / Article-Number 723-35
Keywords Animals; Basic Helix-Loop-Helix Transcription Factors/genetics/ metabolism; Bone Marrow Cells/physiology/ultrastructure; Cell Division/physiology; Cell Lineage/physiology; Cells, Cultured; Cyclin-Dependent Kinase Inhibitor p21/genetics/ metabolism; Cytoplasm/physiology; Gene Knockdown Techniques; Hematopoietic Stem Cells/ physiology/ultrastructure; Megakaryocytes/ physiology/ultrastructure; Mice; Microscopy, Electron; Polyploidy; Proto-Oncogene Proteins/genetics/ metabolism; Thrombocytopenia/pathology/ physiopathology; Thrombopoiesis/ physiology
Abstract Megakaryopoiesis is a complex process that involves major cellular and nuclear changes and relies on controlled coordination of cellular proliferation and differentiation. These mechanisms are orchestrated in part by transcriptional regulators. The key hematopoietic transcription factor stem cell leukemia (SCL)/TAL1 is required in early hematopoietic progenitors for specification of the megakaryocytic lineage. These early functions have, so far, prevented full investigation of its role in megakaryocyte development in loss-of-function studies. Here, we report that SCL critically controls terminal megakaryocyte maturation. In vivo deletion of Scl specifically in the megakaryocytic lineage affects all key attributes of megakaryocyte progenitors (MkPs), namely, proliferation, ploidization, cytoplasmic maturation, and platelet release. Genome-wide expression analysis reveals increased expression of the cell-cycle regulator p21 in Scl-deleted MkPs. Importantly, p21 knockdown-mediated rescue of Scl-mutant MkPs shows full restoration of cell-cycle progression and partial rescue of the nuclear and cytoplasmic maturation defects. Therefore, SCL-mediated transcriptional control of p21 is essential for terminal maturation of MkPs. Our study provides a mechanistic link between a major hematopoietic transcriptional regulator, cell-cycle progression, and megakaryocytic differentiation.
Publisher American Society of Hematology
ISSN/ISBN 1528-0020
edoc-URL http://edoc.unibas.ch/dok/A6005121
Full Text on edoc No
Digital Object Identifier DOI 10.1182/blood-2011-01-328765
PubMed ID http://www.ncbi.nlm.nih.gov/pubmed/21596846
ISI-Number WOS:000292967300036
Document type (ISI) Journal Article
 
   

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