TY - JOUR
T1 - Transcriptional regulation by GATA1 and GATA2 during erythropoiesis
AU - Suzuki, Mikiko
AU - Shimizu, Ritsuko
AU - Yamamoto, Masayuki
N1 - Funding Information:
Acknowledgments This study was supported by JSPS KAKENHI 19GS0312 (to M.Y.), 21390288 (to R.S.) and 22790269 (to M.S.), and the Tohoku University Global COE for the Conquest of Signal Transduction Diseases with Network Medicine (to M.Y.).
PY - 2011/2
Y1 - 2011/2
N2 - The transcription factor GATA1 regulates multiple genes in erythroid lineage cells. However, the means by which GATA1 regulates the expression of target genes during erythropoiesis remains to be elucidated. Three mechanisms have been postulated for the regulation of genes by GATA1. First, individual target genes may have multiple discrete thresholds for cellular GATA1. GATA1 has a dynamic expression profile during erythropoiesis, thus the expression of a set of GATA1 target genes may be triggered at a given stage of differentiation by cellular GATA1. Second, the expression of GATA1 target genes may be modified, at least in part, by GATA2 occupying the GATA-binding motifs. GATA2 is expressed earlier in erythropoiesis than GATA1, and prior GATA2 binding may afford GATA1 access to GATA motifs through epigenetic remodeling and thus facilitate target gene expression. Third, other regulatory molecules specific to each target gene may function cooperatively with GATA1. If GATA1 is required for the expression of such cofactors, a regulatory network will be formed and relevant gene expression will be delayed. We propose that the stage-specific regulation of erythroid genes by GATA1 is tightly controlled through a combination of these mechanisms in vivo.
AB - The transcription factor GATA1 regulates multiple genes in erythroid lineage cells. However, the means by which GATA1 regulates the expression of target genes during erythropoiesis remains to be elucidated. Three mechanisms have been postulated for the regulation of genes by GATA1. First, individual target genes may have multiple discrete thresholds for cellular GATA1. GATA1 has a dynamic expression profile during erythropoiesis, thus the expression of a set of GATA1 target genes may be triggered at a given stage of differentiation by cellular GATA1. Second, the expression of GATA1 target genes may be modified, at least in part, by GATA2 occupying the GATA-binding motifs. GATA2 is expressed earlier in erythropoiesis than GATA1, and prior GATA2 binding may afford GATA1 access to GATA motifs through epigenetic remodeling and thus facilitate target gene expression. Third, other regulatory molecules specific to each target gene may function cooperatively with GATA1. If GATA1 is required for the expression of such cofactors, a regulatory network will be formed and relevant gene expression will be delayed. We propose that the stage-specific regulation of erythroid genes by GATA1 is tightly controlled through a combination of these mechanisms in vivo.
KW - Erythropoiesis
KW - GATA1
KW - GATA2
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U2 - 10.1007/s12185-011-0770-6
DO - 10.1007/s12185-011-0770-6
M3 - Article
C2 - 21279818
AN - SCOPUS:79952242725
SN - 0925-5710
VL - 93
SP - 150
EP - 155
JO - International Journal of Hematology
JF - International Journal of Hematology
IS - 2
ER -