Tandem AP-1-binding sites within the human beta-globin dominant control region function as an inducible enhancer in erythroid cells.

Author:

Ney P A,Sorrentino B P,McDonagh K T,Nienhuis A W

Abstract

A powerful enhancer has been mapped to an 18-bp DNA segment located 11 kb 5' to the human epsilon-globin gene within the dominant control or locus-activating region. This enhancer is inducible in K562 human erythroleukemia cells, increasing linked gamma-globin promoter/luciferase gene expression to 170-fold over an enhancerless construct. The enhancer consists of tandem AP-1-binding sites, phased 10 bp apart, which are both required for full activity. DNA-protein binding assays with nuclear extracts from induced cells demonstrate a high molecular weight complex on the enhancer. The formation of this complex also requires both AP-1 sites and correlates with maximal enhancer activity. Induction of the enhancer may have a role in the increase in globin gene transcription that characterizes erythroid maturation. Enhancer activity appears to be mediated by the binding of a complex of proteins from the jun and fos families to tandem AP-1 consensus sequences.

Publisher

Cold Spring Harbor Laboratory

Subject

Developmental Biology,Genetics

Reference83 articles.

1. 12-O-Tetradecanoyl-phorbol-13-acetate induction of the human collagenase gene is mediated by an inducible enhancer element located in the 5′-flanking region.;Mol. Cell. Biol.,1987

2. The human β-globin gene contains multiple regulatory regions: Identification of one promoter and two downstream enhancers.;EMBO J.,1988

3. Characterization of “fetal-type” acetylcholinesterase in hemintreated K562 cell cultures.;Blood Cells,1987

4. Two 3' sequences direct adult erythroid-specific expression of human beta-globin genes in transgenic mice.

5. The β-globin dominant control region activates homologous and heterologous promoters in a tissue-specific manner

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