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dc.contributor.author Meinders M
dc.contributor.author Hoogenboezem M
dc.contributor.author Scheenstra MR
dc.contributor.author De Cuyper IM
dc.contributor.author Papadopoulos P
dc.contributor.author Németh, Tamás
dc.contributor.author Mócsai, Attila
dc.contributor.author Van Den Berg TK
dc.contributor.author Kuijpers TW
dc.contributor.author Gutiérrez L
dc.date.accessioned 2016-08-25T13:56:42Z
dc.date.available 2016-08-25T13:56:42Z
dc.date.issued 2016
dc.identifier 84968903213
dc.identifier.citation pagination=e0154342, pages 17; journalVolume=11; journalIssueNumber=5; journalTitle=PLOS ONE;
dc.identifier.uri http://repo.lib.semmelweis.hu//handle/123456789/3633
dc.identifier.uri doi:10.1371/journal.pone.0154342
dc.description.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 Gata1cK-OMK 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. © 2016 Meinders et al. 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 credited.
dc.relation.ispartof urn:issn:1932-6203
dc.title Repercussion of megakaryocyte-specific Gata1 Loss on megakaryopoiesis and the hematopoietic precursor compartment
dc.type Journal Article
dc.date.updated 2016-08-17T08:40:41Z
dc.language.rfc3066 en
dc.identifier.mtmt 3085714
dc.contributor.department SE/AOK/I/ÉI/MTA-SE Lendület Gyulladásélettani Kutatócsoport
dc.contributor.department SE/AOK/I/Élettani Intézet
dc.contributor.institution Semmelweis Egyetem
dc.mtmt.swordnote FELTÖLTŐ: Sonnevend Kinga - sonnevend.kinga@med.semmelweis-univ.hu N1 Funding Details: Hungarian Academy of Sciences N1 Funding Details: MTA, Hungarian Academy of Sciences


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