Transition metal ion activation of DNA binding by the diphtheria tox repressor requires the formation of stable homodimers.
- 18 July 1995
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 92 (15) , 6803-6807
- https://doi.org/10.1073/pnas.92.15.6803
Abstract
The diphtheria tox repressor (DtxR) is a transition metal ion-dependent regulatory element that controls the expression of diphtheria toxin and several genes involved in the synthesis of siderophores in Corynebacterium diphtheriae. In the presence of transition metal ions apo-DtxR becomes activated and specifically binds to its target DNA sequences. We demonstrate by glutaraldehyde cross-linking that monomeric apo-DtxR is in weak equilibrium with a dimeric form and that upon addition of activating metal ions to the reaction mixture a dimeric complex is stabilized. Addition of the DNA-binding-defective mutant apo-DtxR(delta 1-47) to apo-DtxR in the absence of transition metal ions inhibits conversion of the apo-repressor to its activated DNA-binding form. We also show that the binding of Ni2+ to both apo-DtxR and apo-DtxR(delta 1-47) is cooperative and that upon ion binding there is a conformational change in the environment of the indole ring moiety of Trp-104. For the wild-type repressor the consequences of this conformational change include a shift in equilibrium toward dimer formation and activation of target DNA binding by the repressor. We conclude that the formation of DtxR homodimers is mediated through a protein-protein interaction domain that is also activated on metal ion binding.Keywords
This publication has 18 references indexed in Scilit:
- Crystallization and Preliminary X-ray Studies of the Diphtheria Tox Repressor from Corynebacterium diphtheriaeJournal of Molecular Biology, 1994
- Specific binding of the diphtheria tox regulatory element DtxR to the tox operator requires divalent heavy metal ions and a 9-base-pair interrupted palindromic sequence.Proceedings of the National Academy of Sciences, 1992
- Coordinate regulation of siderophore and diphtheria toxin production by iron in Corynebacterium diphtheriaeMicrobial Pathogenesis, 1990
- Recognition of a DNA Operator by the Repressor of Phage 434: A View at High ResolutionScience, 1988
- Crystal structure of trp represser/operator complex at atomic resolutionNature, 1988
- The crystal structure of trp aporepressor at 1.8 Å shows how binding tryptophan enhances DNA affinityNature, 1987
- Structure of the represser–operator complex of bacteriophage 434Nature, 1987
- Structure of the cro repressor from bacteriophage λ and its interaction with DNANature, 1981
- Structure of catabolite gene activator protein at 2.9 Å resolution suggests binding to left-handed B-DNANature, 1981
- Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Nature, 1970