Autoactivation by a Candida glabrata Copper Metalloregulatory Transcription Factor Requires Critical Minor Groove Interactions
Open Access
- 1 February 1996
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 16 (2) , 724-734
- https://doi.org/10.1128/mcb.16.2.724
Abstract
Rapid transcriptional autoactivation of the Candida glabrata AMT1 copper metalloregulatory transcription factor gene is essential for survival in the presence of high extracellular copper concentrations. Analysis of the interactions between purified recombinant AMT1 protein and the AMT1 promoter metal regulatory element was carried out by a combination of missing-nucleoside analysis, ethylation interference, site-directed mutagenesis, and quantitative in vitro DNA binding studies. The results of these experiments demonstrate that monomeric AMT1 binds the metal regulatory element with very high affinity and utilizes critical contacts in both the major and minor grooves. A single adenosine residue in the minor groove, conserved in all known yeast Cu metalloregulatory transcription factor DNA binding sites, plays a critical role in both AMT1 DNA binding in vitro and Cu-responsive AMT1 gene transcription in vivo. Furthermore, a mutation in the AMT1 Cu-activated DNA binding domain which converts a single arginine, found in a conserved minor groove binding domain, to lysine markedly reduces AMT1 DNA binding affinity in vitro and results in a severe defect in the ability of C. glabrata cells to mount a protective response against Cu toxicity.Keywords
This publication has 48 references indexed in Scilit:
- Free Radicals and Antioxidants: A Personal ViewNutrition Reviews, 2009
- Mixed Cu+ and Zn2+ Coordination in the DNA-Binding Domain of the AMT1 Transcription Factor from Candida glabrataBiochemistry, 1994
- Rapid transcriptional autoregulation of a yeast metalloregulatory transcription factor is essential for high-level copper detoxification.Genes & Development, 1993
- Allosteric underwinding of DNA is a critical step in positive control of transcription by Hg-MerRNature, 1992
- Low-usage codons in Escherichia coli, yeast, fruit fly and primatesGene, 1991
- Evidence for co‐regulation of Cu,Zn superoxide dismutase and metallothionein gene expression in yeast through transcriptional control by copper via the ACE 1 factorFEBS Letters, 1991
- The missing nucleoside experiment: a new technique to study recognition of DNA by proteinBiochemistry, 1989
- Effect of ethylation of operator-phosphates on Gal represser bindingJournal of Molecular Biology, 1989
- The human chromosomal protein HMG I contains two identical palindrome amino acid sequencesBiochemical and Biophysical Research Communications, 1987
- Analysis of the nucleotide sequence of an invertible controlling element.Proceedings of the National Academy of Sciences, 1980