Defining the sequence specificity of the Saccharomyces cerevisiae DNA binding protein REB1p by selecting binding sites from random‐sequence oligonucleotides
- 1 June 1994
- Vol. 10 (6) , 771-787
- https://doi.org/10.1002/yea.320100608
Abstract
We have used a random selection protocol to define the consensus and range of binding sites for the Saccharomyces cerevisiae REB1 protein. Thirty‐five elements were sequenced which bound specifically to a GST‐REB1p fusion protein coupled to glutathione–Sepharose under conditions in which more than 99·9% of the random sequences were not retained. Twenty‐two of the elements contained the core sequence CGGGTRR, with all but one of the remaining elements containing only one deviation from the core. Of the core sequence, the only residues that were absolutely conserved were the three consecutive G residues. Statistical analysis of a nucleotide‐use matrix suggested that the REB1p binding site also extends into flanking sequences with the optimal sequence for REB1p binding being GNGCCGGGGTAACNC. There was a positive correlation between the ability of the sites to bind in vitro and activate transcription in vivo; however, the presence of non‐conformants suggests that the binding site may contribute more to transcriptional activation than simply allowing protein binding. Interestingly, one of the REB1p binding elements had a DNAse 1 footprint appreciably longer than other elements with similar affinity. Analysis of its sequence indicated the potential for a second REB1p binding site on the opposite strand. This suggests that two closely positioned low‐affinity sites can function together as a highly active site. In addition, database searches with some of the randomly defined REB1p binding sites suggest that related elements are commonly found within ‘TATA‐less’ promoters.Keywords
This publication has 78 references indexed in Scilit:
- A yeast protein that influences the chromatin structure of UASG and functions as a powerful auxiliary gene activator.Genes & Development, 1990
- Cloning of Saccharomyces cerevisiae promoters using a probe vector based on phleomycin resistanceGene, 1990
- The yeast secretory pathway is perturbed by mutations in PMR1, a member of a Ca2+ ATPase familyCell, 1989
- Disruption of the single tropomyosin gene in yeast results in the disappearance of actin cables from the cytoskeletonPublished by Elsevier ,1989
- Statistical positioning of nucleosomes by specific protein-binding to an upstream activating sequence in yeastJournal of Molecular Biology, 1988
- Single-step purification of polypeptides expressed in Escherichia coli as fusions with glutathione S-transferaseGene, 1988
- Structure of the Yeast Isoleucyl-tRNA Synthetase Gene (ILS1). DNA-Sequence, Amino-Acid Sequence of Proteolytic Peptides of the Enzyme and Comparison of the Structure to those of other Known Aminoacyl-tRNA SynthetasesBiological Chemistry Hoppe-Seyler, 1987
- Saturation Mutagenesis of the Yeast his3 Regulatory Site: Requirements for Transcriptional Induction and for Binding by GCN4 Activator ProteinScience, 1986
- Expression of heterologous genes in Saccharomyces cerevisiae from vectors utilizing the glyceraldehyde-3-phosphate dehydrogenase gene promoterGene, 1984
- A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye bindingAnalytical Biochemistry, 1976