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Repercussion of Megakaryocyte-Specific Gata1 Loss on Megakaryopoiesis and the Hematopoietic Precursor Compartment
- Source :
- PLoS ONE, PLoS ONE, 11(5). Public Library of Science, Repositorio Institucional de la Consejería de Sanidad de la Comunidad de Madrid, Consejería de Sanidad de la Comunidad de Madrid, PLoS ONE, Vol 11, Iss 5, p e0154342 (2016), Meinders, M, Hoogenboezem, M, Scheenstra, M R, De Cuyper, I M, Papadopoulos, P, Németh, T, Mócsai, A, van den Berg, T K, Kuijpers, T W & Gutiérrez, L 2016, ' Repercussion of Megakaryocyte-Specific Gata1 Loss on Megakaryopoiesis and the Hematopoietic Precursor Compartment ', PLoS ONE, vol. 11, no. 5, pp. e0154342 . https://doi.org/10.1371/journal.pone.0154342
- Publication Year :
- 2016
- Publisher :
- Public Library of Science, 2016.
-
Abstract
- During hematopoiesis, transcriptional programs are essential for the commitment and differentiation of progenitors into the different blood lineages. GATA1 is a transcription factor expressed in several hematopoietic lineages and essential for proper erythropoiesis and megakaryopoiesis. Megakaryocyte-specific genes, such as GP1BA, are known to be directly regulated by GATA1. Mutations in GATA1 can lead to dyserythropoietic anemia and pseudo gray-platelet syndrome. Selective loss of Gata1 expression in adult mice results in macrothrombocytopenia with platelet dysfunction, characterized by an excess of immature megakaryocytes. To specifically analyze the impact of Gata1 loss in mature committed megakaryocytes, we generated Gata1-Lox|Pf4-Cre mice (Gata1cKOMK). Consistent with previous findings, Gata1cKOMK mice are macrothrombocytopenic with platelet dysfunction. Supporting this notion we demonstrate that Gata1 regulates directly the transcription of Syk, a tyrosine kinase that functions downstream of Clec2 and GPVI receptors in megakaryocytes and platelets. Furthermore, we show that Gata1cKOMK mice display an additional aberrant megakaryocyte differentiation stage. Interestingly, these mice present a misbalance of the multipotent progenitor compartment and the erythroid lineage, which translates into compensatory stress erythropoiesis and splenomegaly. Despite the severe thrombocytopenia, Gata1cKOMK mice display a mild reduction of TPO plasma levels, and Gata1cKOMK megakaryocytes show a mild increase in Pf4 mRNA levels; such a misbalance might be behind the general hematopoietic defects observed, affecting locally normal TPO and Pf4 levels at hematopoietic stem cell niches.
- Subjects :
- 0301 basic medicine
Platelet Aggregation
Transcription, Genetic
Physiology
Megakaryocyte differentiation
lcsh:Medicine
Gene Expression
Biochemistry
Mice
Megakaryocyte
Animal Cells
Medicine and Health Sciences
GATA1 Transcription Factor
lcsh:Science
Mice, Knockout
Multidisciplinary
Hematopoietic stem cell
GATA1
Hematology
Animal Models
Body Fluids
Haematopoiesis
medicine.anatomical_structure
Blood
Erythropoiesis
Cellular Types
Anatomy
Megakaryocytes
Dyserythropoietic anemia
Research Article
Platelets
Bone Marrow Cells
Mouse Models
Enzyme-Linked Immunosorbent Assay
Biology
Research and Analysis Methods
03 medical and health sciences
Model Organisms
medicine
Genetics
Animals
Blood Coagulation
Megakaryopoiesis
Blood Cells
lcsh:R
Biology and Life Sciences
Proteins
Cell Biology
Thrombocytopenia
Cell Compartmentation
030104 developmental biology
Cancer research
lcsh:Q
Collagens
Subjects
Details
- Language :
- English
- ISSN :
- 19326203
- Volume :
- 11
- Issue :
- 5
- Database :
- OpenAIRE
- Journal :
- PLoS ONE
- Accession number :
- edsair.doi.dedup.....0bd703505c12d66e8beefa51d6ed911b
- Full Text :
- https://doi.org/10.1371/journal.pone.0154342