DNA-bend modulation in a repressor-to-activator switching mechanism
- 23 March 1995
- journal article
- research article
- Published by Springer Nature in Nature
- Vol. 374 (6520) , 370-375
- https://doi.org/10.1038/374370a0
Abstract
RECENT discoveries of activator proteins that distort DNA but bear no obvious activation domains have focused attention on the role of DNA structure in transcriptional regulation1. Here we describe how the transcription factor MerR can mediate repression as well as activation through stereospecific modulation of DNA structure. The represser form of MerR binds between the –10 and –35 promoter elements of the bacterial mercury-detoxification genes, PT, allowing RNA polymerase to form an inactive complex with PT and MerR at this stress-inducible promoter2,3. Upon mercuric ion binding, Hg–MerR converts this polymerase complex into the transcriptionally active or 'open' form2–4. We show here that MerR bends DNA towards itself in a manner similar to the bacterial catabolite-activator protein CAP, namely at two loci demarked by DNase I sensitivity, and that the activator conformation, Hg–MerR, relaxes these bends. This activator-induced unbending, when coupled with the previously described untwisting of the operator5, remodels the promoter and makes it a better template for the poised polymerase.Keywords
This publication has 30 references indexed in Scilit:
- Construction of a synthetic gene for the metalloregulatory protein MerR and analysis of regionally mutated proteins for transcriptional regulationBiochemistry, 1994
- DNA recognition by β-sheets in the Arc represser–operator crystal structureNature, 1994
- Sequence-dependent DNA StructureJournal of Molecular Biology, 1993
- The A. tumefaciens transcriptional activator OccR causes a bend at a target promoter, which is partially relaxed by a plant tumor metaboliteCell, 1992
- Allosteric underwinding of DNA is a critical step in positive control of transcription by Hg-MerRNature, 1992
- DNA distortion accompanies transcriptional activation by the metal-responsive gene-regulatory protein MerRBiochemistry, 1990
- Phasing of protein-induced DNA bends in a recombination complexNature, 1989
- The MerR heavy metal receptor mediates positive activation in a topologically novel transcription complexCell, 1989
- DNA bend direction by phase sensitive detectionNature, 1987
- High-resolution analysis of lac transcription complexes inside cellsBiochemistry, 1986