STRUCTURAL STUDIES OF TRANSCRIPTIONAL REGULATION BY LysR-TYPE TRANSCRIPTIONAL REGULATORS IN BACTERIA (original) (raw)
Two modes of transcription initiation in vitro at the rrnB P1 promoter of Escherichia coli. J Biol Chem 268 : 23477-23482
Valery Sagitov, Sergei Borukhov
Journal of Biological Chemistry
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Mechanism of Bacterial Transcription Initiation: RNA Polymerase - Promoter Binding, Isomerization to Initiation-Competent Open Complexes, and Initiation of RNA Synthesis
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DNA functional groups required for formation of open complexes between Escherichia coli RNA polymerase and the λ P(R) promoter. Identification via base analog substitutions
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TRANSCRIPTION. Allosteric transcriptional regulation via changes in the overall topology of the core promoter
Ilyas Yildirim
Science (New York, N.Y.), 2015
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Molecular anatomy of a transcription activation patch: FIS-RNA polymerase interactions at the Escherichia coli rrnB P1 promoter
Tamas Gaal
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Flexibility of the DNA enhances promoter affinity of Escherichia coli RNA polymerase
Hermann Heumann
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Co-ordinated regulation of two divergent promoters through higher-order complex formation by the LysR-type regulator ThnR
Belen Pardal, Elena Rivas-Marín
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Structure of RNA polymerase II promoters. Coordinate conformational alteration of the upstream activator of the TATA- and RNA-initiation sequences under moderate torsional stress
Giorgio Camilloni
Journal of Biological Chemistry
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Two modes of transcription initiation in vitro at the rrnB P1 promoter of Escherichia coli
Sergei Borukhov
The Journal of biological chemistry, 1993
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Interactions of a DNA-bound Transcriptional Activator with the TBP-TFIIA-TFIIB-Promoter Quaternary Complex
Valerie Dion
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RNA polymerase-promoter interactions: the comings and goings of RNA polymerase
Pieter Dehaseth
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Coupling of downstream RNA polymerase-promoter interactions with formation of catalytically competent transcription initiation complex
Sergei Borukhov
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Crystal structure of the DNA-binding domain of the LysR-type transcriptional regulator CbnR in complex with a DNA fragment of the recognition-binding site in the promoter region
Naoto Ogawa
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Contacts between Escherichia coli RNA polymerase and thymines in the lac UV5 promoter
Ulrich Siebenlist
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Influence of DNA geometry on transcriptional activation in Escherichia coli
Sylvie Dethiollaz
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DNA bending and the initiation of transcription at 54-dependent bacterial promoters
Félix Claverie-Martín
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Base Flipping in Open Complex Formation at Bacterial Promoters
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RNA-polymerase binding at the promoters of the rRNA genes of Escherichia coli
Ibolya Kiss
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Bacterial promoter architecture: subsite structure of UP elements and interactions with the carboxy-terminal domain of the RNA polymerase alpha subunit
Richard Ebright
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Enhancer-dependent transcription by bacterial RNA polymerase: the beta subunit downstream lobe is used by sigma 54 during open promoter complex formation
Konstantin Severinov
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Transcription Factor B Contacts Promoter DNA Near the Transcription Start Site of the Archaeal Transcription Initiation Complex
Richard Ebright
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Topography of intermediates in transcription initiation of E.coli
Hermann Heumann
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Localization of the intrinsically bent DNA region upstream of the E.coli rrnB P1 promoter
Roger Wartell
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Specificity of DNA–Protein Interactions within Transcription Complexes of Escherichia coli
O. Ozoline
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Structural basis of transcription activation
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Location and orientation of an activating region in the Escherichia coli transcription factor, FNR
Andrew Bell
Molecular Microbiology, 1994
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Transcriptional activation of the Klebsiella pneumoniae nifLA promoter by NTRC is face-of-the-helix dependent and the activator stabilizes the interaction of sigma 54-RNA polymerase with the promoter
Stephen Minchin
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Transcription regulation by inflexibility of promoter DNA in a looped complex
Sankar Adhya
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Mode of DNA-protein interaction between the C-terminal domain of Escherichia coli RNA polymerase alpha subunit and T7D promoter UP element
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Promoter recognition by Escherichia coli RNA polymerase. Effects of single base pair deletions and insertions in the spacer DNA separating the -10 and -35 regions are dependent on spacer DNA sequence
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Location of the Escherichia coli RNA polymerase α subunit C-terminal domain at an FNR-dependent promoter: analysis using an artificial nuclease
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