Proceedings of the National Academy of Sciences · 1987 · 130 citations · 25 references
Molecular RegulationMolecular BiologyMolecular GeneticsArac ProteinArabad Operon PromoterTranscriptional RegulationProtein ExpressionGene StructureArai Dna OccupancyBiochemistryDna ReplicationMolecular MicrobiologyArabad PromoterGene ExpressionTranscription RegulationProtein BiosynthesisArabinose-induced BindingSignal TransductionNatural SciencesGene RegulationMicrobiologyMedicine
The state of Escherichia coli araI DNA occupancy by AraC protein has been found to change from a two-turn to a four-turn occupancy upon the addition of the inducer arabinose. The araI site is separable into two contiguous regions, araI1 and araI2. araI1 binds both ligand-bound and ligand-free AraC protein, whereas araI2 binds AraC protein in the presence of arabinose only. A mutation in araI and a known mutation in araC led to the loss of araI2 binding, while binding to araI1 was unaffected. Both mutants failed to activate the promoter of the araBAD operon. We propose that araI2 occupancy by AraC protein leads to RNA polymerase recognition of the araBAD promoter and that araI1 acts as a switch mechanism allowing both the repressor and the activator forms of AraC protein to regulate the araBAD promoter.
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DNA sequencing with chain-terminating inhibitors
Frederick Sanger, S. Nicklen, Alan Coulson · Proceedings of the National Academy of Sciences · 1977 · 69.1K citations · Full text
Dna, Engineering, Dna Analysis +20
Thomas M. Dunn, Steven Hahn, S Ogden et al. · Proceedings of the National Academy of Sciences · 1984 · 381 citations · Full text