Multiple Sequence-Specific Single-Strand-Binding Proteins for the Promoter Region of the Rat Albumin Gene
- 1 March 1991
- journal article
- research article
- Published by Mary Ann Liebert Inc in DNA and Cell Biology
- Vol. 10 (2) , 113-118
- https://doi.org/10.1089/dna.1991.10.113
Abstract
Previous work from our laboratory described a protein that binds to single-stranded DNA in the early promoter of simian virus 40 in a sequence specific fashion. We have now used the gel retardation assay to search for similar sequence-specific single-strand-binding proteins for the promoter region of the rat albumin gene in nuclear extracts of rat hepatoma cells. Several proteins of this kind were detected, three of which are described in the present paper. Two of them bind specifically to the noncoding strand and the third one binds to the coding strand. The most abundant of these proteins binds to a pyrimidine stretch inside the coding region of the gene and appears to be homologous to the previously observed SV40-binding protein. Possible functions for sequence-specific single-strand-binding proteins in transcription are discussed.Keywords
This publication has 31 references indexed in Scilit:
- Sequence-specific single-strand-binding protein for the simian virus 40 early promoter stimulates transcription in vitroJournal of Molecular Biology, 1990
- Transcriptional Regulation in Mammalian Cells by Sequence-Specific DNA Binding ProteinsScience, 1989
- A recombination hotspot in the LTR of a mouse retrotransposon identified in an in vitro systemCell, 1989
- The Role of Cis-Acting Promoter Elements in Tissue-Specific Albumin Gene ExpressionScience, 1989
- A Promoter with an Internal Regulatory Domain Is Part of the Origin of Replication in BPV-1Science, 1987
- Translational and transcriptional control elements in the untranslated leader of the heat-shock gene hsp22Cell, 1986
- Synthetic oligonucleotide probes deduced from amino acid sequence dataJournal of Molecular Biology, 1985
- A protein binds to a satellite DNA repeat at three specific sites that would be brought into mutual proximity by DNA folding in the nucleosomeCell, 1984
- Dedifferentiated variants of a rat hepatoma: Reversion analysisCell, 1980
- General Model for the Chromosomes of Higher OrganismsNature, 1971