FUNCTIONAL-ANALYSIS OF DEVELOPMENTALLY REGULATED CHROMATIN-HYPERSENSITIVE DOMAINS CARRYING THE ALPHA-1-FETOPROTEIN GENE PROMOTER AND THE ALBUMIN ALPHA-1-FETOPROTEIN INTERGENIC ENHANCER

被引:70
作者
BERNIER, D [1 ]
THOMASSIN, H [1 ]
ALLARD, D [1 ]
GUERTIN, M [1 ]
HAMEL, D [1 ]
BLAQUIERE, M [1 ]
BEAUCHEMIN, M [1 ]
LARUE, H [1 ]
ESTABLEPUIG, M [1 ]
BELANGER, L [1 ]
机构
[1] UNIV LAVAL,HOTEL DIEU QUEBEC,CTR RECH CANCEROL,QUEBEC CITY G1R 2J6,PQ,CANADA
关键词
D O I
10.1128/MCB.13.3.1619
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
During liver development, the tandem alpha1-fetoprotein (AFP)/albumin locus is triggered at the AFP end and then asymmetrically enhanced; this is followed by autonomous repression of the AFP-encoding gene. To understand this regulation better, we characterized the two early developmental stage-specific DNase I-hypersensitive (DH) sites so far identified in rat liver AFP/albumin chromatin: an intergenic DH-enhancer site and the AFP DH-promoter site. Mutation-transfection analyses circumscribed the DH-enhancer domain to a 200-bp DNA segment stringently conserved among species. Targeted mutations, DNA-protein-binding assays, and coexpression experiments pinpointed C/EBP as the major activatory component of the intergenic enhancer. Structure-function relationships at the AFP DH-promoter site defined a discrete glucocorticoid-regulated domain activated cooperatively by HNF1 and a highly specific AFP transcription factor, FTF, which binds to a steroid receptor recognition motif. The HNF1/FTF/DNA complex is deactivated by glucocorticoid receptors or by the ubiquitous factor NF1, which eliminates HNF1 by competition at an overlapping, high-affinity binding site. We propose that the HNF1-NF1 site might serve as a developmental switch to direct autonomous AFP gene repression in late liver development. We also conclude that the intergenic enhancer is driven by C/EBPalpha primarily to fulfill albumin gene activation functions at early developmental stages. Factor FTF seems to be the key regulator of AFP gene-specific functions in carcinoembryonic states.
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页码:1619 / 1633
页数:15
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