P73 plays a role in erythroid differentiaion through GATA1 induction
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Marqués-García, Fernando; Ferrándiz Díaz, Nuria; Fernández-Alonso, Rosalía; González-Cano, Laura; Herreros-Villanueva, Marta; Rosa Garrido, Manuel


Fecha
2009Derechos
© 2009 by The American Society for Biochemistry and Molecular Biology, Inc. This is an Open Access article under the CC BY license.
Publicado en
Journal of Biological Chemistry, 2009, 284(32), 21139-21156
Editorial
American Society for Biochemistry and Molecular Biology Inc.
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Resumen/Abstract
The TP73 gene gives rise to transactivation domain-p73 isoforms (TAp73) as well as ANp73 variants with a truncated N terminus. Although TAp73a and -B proteins are capable of inducing cell cycle arrest, apoptosis, and differentiation, ANp73 acts in many cell types as a dominant-negative repressor of p53 and TAp73. It has been proposed that p73 is involved in myeloid differentiation, and its altered expression is involved in leukemic degeneration. However, there is little evidence as to which p73 variants (TA or AN) are expressed during differentiation and whether specific p73 isoforms have the capacity to induce, or hinder, this differentiation in leukemia cells. In this study we identify GATA1 as a direct transcriptional target of TAp73a. Furthermore, TAp73a induces GATA1 activity, and it is required for erythroid differentiation. Additionally, we describe a functional cooperation between TAp73 and ANp73 in the context of erythroid differentiation in human myeloid cells, K562 and UT-7. Moreover, the impaired expression of GATA1 and other erythroid genes in the liver of p73KO embryos, together with the moderated anemia observed in p73KO young mice, suggests a physiological role for TP73 in erythropoiesis.
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