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Structure (London, England : 1993)|November 13, 2010
An ATPase R-finger leaves its print on transcriptional activationMartin Buck, Timothy R Hoover
Nucleic Acids Research|January 16, 2015
Amplification of small molecule-inducible gene expression via tuning of intracellular receptor densitiesBaojun Wang, Mauricio Barahona, Martin Buck
The Journal of Biological Chemistry|September 16, 2006
Heterogeneous nucleotide occupancy stimulates functionality of phage shock protein F, an AAA+ transcriptional activatorNicolas Joly, Jörg Schumacher, Martin Buck
Nucleic Acids Research|July 18, 2014
Engineering modular and tunable genetic amplifiers for scaling transcriptional signals in cascaded gene networksBaojun Wang, Mauricio Barahona, Martin Buck
Biosensors & Bioelectronics|September 18, 2012
A modular cell-based biosensor using engineered genetic logic circuits to detect and integrate multiple environmental signalsBaojun Wang, Mauricio Barahona, Martin Buck
Nucleic Acids Research|February 14, 2002
Interactions of regulated and deregulated forms of the sigma54 holoenzyme with heteroduplex promoter DNAWendy Cannon, Siva R Wigneshweraraj, Martin Buck
Current Opinion in Microbiology|July 25, 2016
Recognizing and engineering digital-like logic gates and switches in gene regulatory networksRobert W Bradley, Martin Buck, Baojun Wang
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|October 15, 2015
Tools and Principles for Microbial Gene Circuit EngineeringRobert W Bradley, Martin Buck, Baojun Wang
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