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Nucleic Acids Research|September 12, 2012
A dual switch controls bacterial enhancer-dependent transcriptionSimone C Wiesler, Patricia C Burrows, Martin Buck
Nucleic Acids Research|April 24, 2013
An aromatic residue switch in enhancer-dependent bacterial RNA polymerase controls transcription intermediate complex activitySimone C Wiesler, Robert O J Weinzierl, Martin Buck
The Journal of Biological Chemistry|March 8, 2008
An intramolecular route for coupling ATPase activity in AAA+ proteins for transcription activationNicolas Joly, Patricia C Burrows, Martin Buck
Proceedings of the National Academy of Sciences of the United States of America|May 5, 2010
A prehydrolysis state of an AAA+ ATPase supports transcription activation of an enhancer-dependent RNA polymerasePatricia C Burrows, Nicolas Joly, Martin Buck
Journal of Molecular Biology|November 17, 2007
Protein-DNA interactions that govern AAA+ activator-dependent bacterial transcription initiationPatricia C Burrows, Siva R Wigneshweraraj, Martin Buck
Nucleic Acids Research|June 26, 2009
Comparative analysis of activator-Esigma54 complexes formed with nucleotide-metal fluoride analoguesPatricia C Burrows, Nicolas Joly, B Tracy Nixon, et al.
The EMBO Journal|October 8, 2004
Reorganisation of an RNA polymerase-promoter DNA complex for DNA meltingPatricia C Burrows, Konstantin Severinov, Martin Buck, et al.
The Journal of Biological Chemistry|August 27, 2005
Stable DNA opening within open promoter complexes is mediated by the RNA polymerase beta'-jaw domainSiva R Wigneshweraraj, Patricia C Burrows, Konstantin Severinov, et al.
The Journal of Biological Chemistry|May 17, 2003
Mapping sigma 54-RNA polymerase interactions at the -24 consensus promoter elementPatricia C Burrows, Konstantin Severinov, Akira Ishihama, et al.
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