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GABP transcription factor is required for myeloid differentiation, in part, through its control of Gfi-1 expression.

Authors :
Zhong-Fa Yang
Drumea, Karen
Cormier, James
Junling Wang
Xuejun Zhu
Rosmarin, Alan G.
Source :
Blood. 8/25/2011, Vol. 118 Issue 8, p2243-2253. 11p.
Publication Year :
2011

Abstract

GABP is an ets transcription factor that regulates genes that are required for myeloid differentiation. The tetrameric GABP complex includes GABPa, which binds DNA via its ets domain, and GABPβ, which contains the transcription activation domain. To examine the role of GABP in myeloid differentiation, we generated mice in which Gabpa can be conditionally deleted in hematopoietic tissues. Gabpa knockout mice rapidly lost myeloid cells, and residual myeloid cells were dysplastic and immunophenotypically abnormal. Bone marrow transplantation demonstrated that Gabpa null cells could not contribute to the myeloid compartment because of cell intrinsic defects. Disruption of Gabpa was associated with a marked reduction in myeloid progenitor cells, and Gabpa null myeloid cells express reduced levels of the transcriptional repressor, Gfi-1. Gabp bound and activated the Gfi1 promoter, and transduction of Gabpa knockout bone marrow with Gfi1 partially rescued defects in myeloid colony formation and myeloid differentiation. We conclude that Gabp is required for myeloid differentiation due, in part, to its regulation of the tran-scriptional repressor Gfi-1. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00064971
Volume :
118
Issue :
8
Database :
Academic Search Index
Journal :
Blood
Publication Type :
Academic Journal
Accession number :
66801421
Full Text :
https://doi.org/10.1182/blood-2010-07-298802