NF-E2 Disrupts Chromatin Structure at Human β-Globin Locus Control Region Hypersensitive Site 2 In Vitro
Open Access
- 1 October 1996
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 16 (10) , 5634-5644
- https://doi.org/10.1128/mcb.16.10.5634
Abstract
The human beta-globin locus control region (LCR) is responsible for forming an active chromatin structure extending over the 100-kb locus, allowing expression of the beta-globin gene family. The LCR consists of four erythroid-cell-specific DNase I hypersensitive sites (HS1 to -4). DNase I hypersensitive sites are thought to represent nucleosome-free regions of DNA which are bound by trans-acting factors. Of the four hypersensitive sites only HS2 acts as a transcriptional enhancer. In this study, we examine the binding of an erythroid protein to its site within HS2 in chromatin in vitro. NF-E2 is a transcriptional activator consisting of two subunits, the hematopoietic cell-specific p45 and the ubiquitous DNA-binding subunit, p18. NF-E2 binds two tandem AP1-like sites in HS2 which form the core of its enhancer activity. In this study, we show that when bound to in vitro-reconstituted chromatin, NF-E2 forms a DNase I hypersensitive site at HS2 similar to the site observed in vivo. Moreover, NF-E2 binding in vitro results in a disruption of nucleosome structure which can be detected 200 bp away. Although NF-E2 can disrupt nucleosomes when added to preformed chromatin, the disruption is more pronounced when NF-E2 is added to DNA prior to chromatin assembly. Interestingly, the hematopoietic cell-specific subunit, p45, is necessary for binding to chromatin but not to naked DNA. Interaction of NF-E2 with its site in chromatin-reconstituted HS2 allows a second erythroid factor, GATA-1, to bind its nearby sites. Lastly, nucleosome disruption by NF-E2 is an ATP-dependent process, suggesting the involvement of energy-dependent nucleosome remodeling factors.Keywords
This publication has 66 references indexed in Scilit:
- ATP-Dependent Nucleosome Reconfiguration and Transcriptional Activation from Preassembled Chromatin TemplatesScience, 1994
- Nucleosome disruption and enhancement of activator binding by a human SW1/SNF complexNature, 1994
- The establishment of active promoters in chromatinBioEssays, 1994
- A 5′ element of the chicken β-globin domain serves as an insulator in human erythroid cells and protects against position effect in DrosophilaCell, 1993
- Transcription Factor Loading on the MMTV Promoter: A Bimodal Mechanism for Promoter ActivationScience, 1992
- Role of Nucleosomal Cores and Histone H1 in Regulation of Transcription by RNA Polymerase IIScience, 1991
- Structure and evolution of a human erythroid transcription factorNature, 1990
- A dominant control region from the human β-globin locus conferring integration site-independent gene expressionNature, 1989
- NUCLEASE HYPERSENSITIVE SITES IN CHROMATINAnnual Review of Biochemistry, 1988
- Position-independent, high-level expression of the human β-globin gene in transgenic miceCell, 1987