AML1A and AML1B can transactivate the human IL-3 promoter Journal Article


Authors: Uchida, H.; Zhang, J.; Nimer, S. D.
Article Title: AML1A and AML1B can transactivate the human IL-3 promoter
Abstract: The AML1 gene encodes several transcription factors, including AML1A and AML1B, which bind to DNA via a TGT/cGGT consensus sequence that is found in several promoters, including the human IL-3 promoter. We performed cotransfection experiments in T cells, and demonstrated that although AML1A lacks a putative transactivation domain, it can transactivate the IL-3 promoter nearly as effectively as AML1B, a known activator. A consensus AML1 binding site (TGTGGT), located in the previously identified DNase I footprint region A of the human IL-3 promoter (extending from bp -165 to -128), and a sequence similar to the consensus binding site (TGTGGG), located in footprint region B (bp -55 to -42), specifically bind AML1 proteins in gel shift assays. The affinity for the TGTGGG sequence was much less than that for the TGTGGT sequence, and mutating the TGTGGG sequence did not alter the IL-3 promoter activity, whereas mutation of the consensus binding site decreased the basal promoter activity and nearly eliminated transactivation by AML1A and AML1B. The AML1/ETO fusion protein, generated by the t(8;21) translocation, repressed IL-3 promoter activity, although the AML1 portion of AML1/ETO (amino acids 1-177) lacked transcriptional regulatory activity and did not bind to DNA in vitro. The 60- to 177-amino acid portion of AML1 readily bound DNA, suggesting that the first 59 amino acids may function as an inhibitory domain for DNA binding. Demonstration of the transactivation by AML1A and localization of a putative inhibitory binding domain suggest additional complexity within this family of transcription factors.
Keywords: dna binding protein; oncoprotein; promoter region; genetics; dna-binding proteins; proto-oncogene proteins; animal; animals; transcription factor; genetic transcription; transcription, genetic; drug effect; transcription factors; immunology; drug antagonism; amino acid sequence; hybrid protein; recombinant fusion proteins; transactivator protein; binding site; binding sites; trans-activators; repressor protein; repressor proteins; core binding factor alpha 2 subunit; transcription factor runx1; consensus sequence; haplorhini; promoter regions (genetics); interleukin 3; interleukin-3; humans; human; article; runx1 protein, human; hylobates
Journal Title: Journal of Immunology
Volume: 158
Issue: 5
ISSN: 0022-1767
Publisher: The American Association of Immunologists, Inc  
Date Published: 1997-03-01
Start Page: 2251
End Page: 2258
Language: English
PUBMED: 9036972
PROVIDER: scopus
DOI/URL:
Notes: Article -- Export Date: 17 March 2017 -- Source: Scopus
Citation Impact
MSK Authors
  1. Jin Zhang
    24 Zhang
  2. Stephen D Nimer
    347 Nimer