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Infection and Immunity|May 7, 2014
Bile acids and bicarbonate inversely regulate intracellular cyclic di-GMP in Vibrio choleraeBenjamin J Koestler, Christopher M WatersPlos Pathogens|October 30, 2020
Triclosan depletes the membrane potential in Pseudomonas aeruginosa biofilms inhibiting aminoglycoside induced adaptive resistanceMichael M Maiden, Christopher M WatersApplied and Environmental Microbiology|August 28, 2016
Bacterial Quorum Sensing Stabilizes Cooperation by Optimizing Growth StrategiesEric L Bruger, Christopher M WatersMethods in Molecular Biology (Clifton, N.J.)|September 11, 2017
Spectrophotometric and Mass Spectroscopic Methods for the Quantification and Kinetic Evaluation of In Vitro c-di-GMP SynthesisGeoffrey B Severin, Christopher M WatersBiorxiv : the Preprint Server for Biology|February 13, 2023
Vibrio cholerae phage ICP3 requires O1 antigen for infectionDrew A Beckman, Christopher M WatersBiorxiv : the Preprint Server for Biology|April 15, 2024
A Vibrio cholerae Type IV restriction system targets glucosylated 5-hydroxyl methyl cytosine to protect against phage infectionJasper B Gomez, Christopher M WatersJournal of Bacteriology|July 10, 2026
Roles of divalent metals in the regulation of cyclic di-GMP signaling in bacteriaAathmaja Anandhi Rangarajan, Christopher M WatersAmerican Journal of Physiology. Cell Physiology|November 26, 2011
Molecular mechanism of interleukin-2-induced mucosal homeostasisJayshree Mishra, Christopher M Waters, Narendra KumarBiotechnology and Bioengineering|July 21, 2015
Regulation of biofilm formation and cellular buoyancy through modulating intracellular cyclic di-GMP levels in engineered cyanobacteriaMarco Agostoni, Christopher M Waters, Beronda L MontgomeryPageof 22