Jeffrey M. Flynn, Ph.D.
Affiliations: | 2013 | Microbiology ALS | University of Wisconsin, Madison, Madison, WI |
Area:
Microbiology BiologyGoogle:
"Jeffrey Flynn"Parents
Sign in to add mentorDiana M. Downs | grad student | 2013 | UW Madison | |
(Toward a metabolic understanding of 2-aminoacrylate stress in italic>ridA mutants of Salmonella enterica.) |
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Publications
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Flynn JM, Phan C, Hunter RC. (2017) Genome-wide survey of Pseudomonas aeruginosa PA14 reveals a role for the glyoxylate pathway and extracellular proteases in the utilization of mucin. Infection and Immunity |
Flynn JM, Niccum D, Dunitz JM, et al. (2016) Evidence and Role for Bacterial Mucin Degradation in Cystic Fibrosis Airway Disease. Plos Pathogens. 12: e1005846 |
Flynn JM, Christopherson MR, Downs DM. (2013) Decreased coenzyme A levels in ridA mutant strains of Salmonella enterica result from inactivated serine hydroxymethyltransferase. Molecular Microbiology. 89: 751-9 |
Flynn JM, Downs DM. (2013) In the absence of RidA, endogenous 2-aminoacrylate inactivates alanine racemases by modifying the pyridoxal 5'-phosphate cofactor. Journal of Bacteriology. 195: 3603-9 |
Lambrecht JA, Flynn JM, Downs DM. (2012) Conserved YjgF protein family deaminates reactive enamine/imine intermediates of pyridoxal 5'-phosphate (PLP)-dependent enzyme reactions. The Journal of Biological Chemistry. 287: 3454-61 |
Ross DE, Flynn JM, Baron DB, et al. (2011) Towards electrosynthesis in shewanella: energetics of reversing the mtr pathway for reductive metabolism. Plos One. 6: e16649 |
Flynn JM, Ross DE, Hunt KA, et al. (2010) Enabling unbalanced fermentations by using engineered electrode-interfaced bacteria. Mbio. 1 |
Hunt KA, Flynn JM, Naranjo B, et al. (2010) Substrate-level phosphorylation is the primary source of energy conservation during anaerobic respiration of Shewanella oneidensis strain MR-1. Journal of Bacteriology. 192: 3345-51 |
Flynn JM, Neher SB, Kim YI, et al. (2003) Proteomic discovery of cellular substrates of the ClpXP protease reveals five classes of ClpX-recognition signals. Molecular Cell. 11: 671-83 |