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Methods 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 WatersCell Host & Microbe|April 12, 2019
Pyrimidines and Cyclic Trinucleotides Join the Second Messenger SymphonyGeoffrey B Severin, Christopher M WatersCurrent Biology : CB|February 3, 2026
Bacterial competition: How to hotwire a flagellumGeoffrey B Severin, Christopher M WatersBMC Microbiology|February 5, 2014
The Vibrio cholerae diguanylate cyclase VCA0965 has an AGDEF active site and synthesizes cyclic di-GMPJessica L Hunter, Geoffrey B Severin, Benjamin J Koestler, et al.Journal of Bacteriology|August 14, 2019
The Vc2 Cyclic di-GMP-Dependent Riboswitch of Vibrio cholerae Regulates Expression of an Upstream Putative Small RNA by Controlling RNA StabilityBenjamin R Pursley, Nicolas L Fernandez, Geoffrey B Severin, et al.Journal of Bacteriology|January 10, 2018
Cyclic di-GMP Regulates TfoY in Vibrio cholerae To Control Motility by both Transcriptional and Posttranscriptional MechanismsBenjamin R Pursley, Michael M Maiden, Meng-Lun Hsieh, et al.Proceedings of the National Academy of Sciences of the United States of America|July 15, 2020
Surface sensing stimulates cellular differentiation in <i>Caulobacter crescentus</i>Rhett A Snyder, Courtney K Ellison, Geoffrey B Severin, et al.Molecular Plant Pathology|February 2, 2018
The diguanylate cyclase GcpA inhibits the production of pectate lyases via the H-NS protein and RsmB regulatory RNA in Dickeya dadantiiXiaochen Yuan, Fang Tian, Chenyang He, et al.Journal of Bacteriology|October 16, 2019
Under Elevated c-di-GMP in Escherichia coli, YcgR Alters Flagellar Motor Bias and Speed Sequentially, with Additional Negative Control of the Flagellar Regulon via the Adaptor Protein RssBVincent Nieto, Jonathan D Partridge, Geoffrey B Severin, et al.Proceedings of the National Academy of Sciences of the United States of America|August 26, 2015
Oligoribonuclease is the primary degradative enzyme for pGpG in Pseudomonas aeruginosa that is required for cyclic-di-GMP turnoverMona W Orr, Gregory P Donaldson, Geoffrey B Severin, et al.Pageof 21