Binding of nuclear factor EF-C to a functional domain of the hepatitis B virus enhancer region.
Open Access
- 1 July 1989
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 9 (7) , 2787-2797
- https://doi.org/10.1128/mcb.9.7.2787
Abstract
Nuclear factor EF-C is present in extracts prepared from human HepG2 liver cells and from other, nonliver cell lines and binds to the hepatitis B virus and polyomavirus transcriptional enhancer regions in vitro. An inverted repeat (5'-GTTGCNNNGCAAC-3') is located within both binding regions. Diethyl pyrocarbonate interference binding assays and competition binding experiments using altered binding sites demonstrated that EF-C contacts symmetrical nucleotides within the inverted repeat. Mutations that changed the length of the spacer region between the arms of the inverted repeat were introduced in the hepatitis enhancer region. Introduction of 1 or 2 base pairs between the repeats did not affect EF-C binding, but deletion of 1 base pair or introduction of 3 to 9 base pairs reduced binding dramatically. Introduction of 10 base pairs restored partial EF-C binding ability. These and other results suggest that EF-C binding is stabilized by dimerization. In vivo assays for enhancer function using these mutants demonstrated that the EF-C binding site is a functional and important component of the hepatitis B virus enhancer region.This publication has 65 references indexed in Scilit:
- Cooperativity and hierarchical levels of functional organization in the SV40 enhancerCell, 1988
- A 100-kD HeLa cell octamer binding protein (OBP100) interacts differently with two separate octamer-related sequences within the SV40 enhancer.Genes & Development, 1987
- Formation of the pool of covalently closed circular viral DNA in hepadnavirus-infected cellsPublished by Elsevier ,1986
- Nucleotide Sequence of a Cloned Hepatitis B Virus Genome, Subtype ayr: Comparison with Genomes of the Other Three SubtypesJournal of General Virology, 1986
- Production of hepatitis B virus by a differentiated human hepatoma cell line after transfection with cloned circular HBV DNACell, 1986
- The hepatitis B virusNature, 1985
- Mapping the major transcripts of ground squirrel hepatitis virus: the presumptive template for reverse transcriptase is terminally redundantCell, 1985
- Signals regulating hepatitis B surface antigen transcriptionNature, 1983
- Hepatitis B Virus Infection in Cultured Human Lymphoblastoid CellsScience, 1983
- Transfer of purified herpes virus thymidine kinase gene to cultured mouse cellsCell, 1977