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Gata1 expression driven by the alternative HS2 enhancer in the spleen rescues the hematopoietic failure induced by the hypomorphic Gata1low mutation.


ABSTRACT: Rigorously defined reconstitution assays developed in recent years have allowed recognition of the delicate relationship that exists between hematopoietic stem cells and their niches. This balance ensures that hematopoiesis occurs in the marrow under steady-state conditions. However, during development, recovery from hematopoietic stress and in myeloproliferative disorders, hematopoiesis occurs in extramedullary sites whose microenvironments are still poorly defined. The hypomorphic Gata1(low) mutation deletes the regulatory sequences of the gene necessary for its expression in hematopoietic cells generated in the marrow. By analyzing the mechanism that rescues hematopoiesis in mice carrying this mutation, we provide evidence that extramedullary microenvironments sustain maturation of stem cells that would be otherwise incapable of maturing in the marrow.

SUBMITTER: Migliaccio AR 

PROVIDER: S-EPMC2744572 | biostudies-literature | 2009 Sep

REPOSITORIES: biostudies-literature

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Gata1 expression driven by the alternative HS2 enhancer in the spleen rescues the hematopoietic failure induced by the hypomorphic Gata1low mutation.

Migliaccio Anna Rita AR   Martelli Fabrizio F   Verrucci Maria M   Sanchez Massimo M   Valeri Mauro M   Migliaccio Giovanni G   Vannucchi Alessandro Maria AM   Zingariello Maria M   Di Baldassarre Angela A   Ghinassi Barbara B   Rana Rosa Alba RA   van Hensbergen Yvette Y   Fibbe Willem E WE  

Blood 20090701 10


Rigorously defined reconstitution assays developed in recent years have allowed recognition of the delicate relationship that exists between hematopoietic stem cells and their niches. This balance ensures that hematopoiesis occurs in the marrow under steady-state conditions. However, during development, recovery from hematopoietic stress and in myeloproliferative disorders, hematopoiesis occurs in extramedullary sites whose microenvironments are still poorly defined. The hypomorphic Gata1(low) m  ...[more]

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