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Chromatin Immunoselection Defines a TAL-1 Target Gene

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Journal EMBO J
Date 1998 Sep 2
PMID 9724651
Citations 19
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Abstract

Despite the major functions of the basic helix-loop-helix transcription factor TAL-1 in hematopoiesis and T-cell leukemogenesis, no TAL-1 target gene has been identified. Using immunoprecipitation of genomic fragments bound to TAL-1 in the chromatin of murine erythro-leukemia (MEL) cells, we found that 10% of the immunoselected fragments contained a CAGATG or a CAGGTG E-box, followed by a GATA site. We studied one of these fragments containing two E-boxes, CAGATG and CAGGTC, followed by a GATA motif, and showed that TAL-1 binds to the CAGGTG E-box with an affinity modulated by the CAGATG or the GATA site, and that the CAGGTG-GATA motif exhibits positive transcriptional activity in MEL but not in HeLa cells. This immunoselected sequence is located within an intron of a new gene co-expressed with TAL-1 in endothelial and erythroid cells, but not expressed in fibroblasts or adult liver where no TAL-1 mRNA was detected. Finally, in vitro differentiation of embryonic stem cells towards the erythro/megakaryocytic pathways showed that the TAL-1 target gene expression followed TAL-1 and GATA-1 expression. These results establish that TAL-1 is likely to activate its target genes through a complex that binds an E-box-GATA motif and define the first gene regulated by TAL-1.

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References
1.
Green A, Lints T, Visvader J, Harvey R, Begley C . SCL is coexpressed with GATA-1 in hemopoietic cells but is also expressed in developing brain. Oncogene. 1992; 7(4):653-60. View

2.
Graba Y, Aragnol D, Laurenti P, Garzino V, Charmot D, Berenger H . Homeotic control in Drosophila; the scabrous gene is an in vivo target of Ultrabithorax proteins. EMBO J. 1992; 11(9):3375-84. PMC: 556872. DOI: 10.1002/j.1460-2075.1992.tb05416.x. View

3.
Aplan P, Nakahara K, Orkin S, Kirsch I . The SCL gene product: a positive regulator of erythroid differentiation. EMBO J. 1992; 11(11):4073-81. PMC: 556917. DOI: 10.1002/j.1460-2075.1992.tb05500.x. View

4.
Rahuel C, Vinit M, Lemarchandel V, Cartron J, Romeo P . Erythroid-specific activity of the glycophorin B promoter requires GATA-1 mediated displacement of a repressor. EMBO J. 1992; 11(11):4095-102. PMC: 556919. DOI: 10.1002/j.1460-2075.1992.tb05502.x. View

5.
Keller G, Kennedy M, Papayannopoulou T, Wiles M . Hematopoietic commitment during embryonic stem cell differentiation in culture. Mol Cell Biol. 1993; 13(1):473-86. PMC: 358927. DOI: 10.1128/mcb.13.1.473-486.1993. View