Bainton, N.J. et al., “A general role for the lux autoinducer in bacterial cell signalling: control of antibiotic biosynthesis in Erwinia,” Gene, 1992, vol. 116, 87-91. |
Bainton, N.J. et al., “N-(3-Oxohexanoyl)-L-homoserine lactose regulates carbapenem antibiotic production in Erwinia carotovora,” Biochemistry Journal, 1992, vol. 288, 997-1004. |
Bever, R.A. et al., “Molecular Characterization and Nucleotide Sequence of the Pseudomas aeruginosa Elastase Structural Gene,” Journal of Bacteriology, 1988, vol. 170, No. 9, 4309-4314. |
Cao, J-G. et al., “Biosynthesis and Stereochemistry of the Autoinducer Controlling Luminescence in Vibrio harveyi,” Journal of Bacteriology, 1993, vol. 175, No. 12, 3856-3862. |
Cao, J-G. et al., “Purification and Structural Identification of an Autoinducer for the Luminescence System of Vibrio harveyi,” Journal of Biological Chemistry, 1989, vol. 264, No. 36, 21670-21676. |
Choi, S.H. et al., “Genetic Dissection of DNA Binding and Luminescence Gene Activation by the Vibrio fischeri LuxR Protein,” Journal of Bacteriology, 1992, vol. 174, No. 12, 4064-4069. |
Eberhard, A. et al., “Analogs of the autoinducer of bioluminescence in Vibrio fischeri,” Archives of Microbiology, 1986, vol. 146, No. 35, 35-40. |
Eberhard, A. et al., “Structural Identification of Autoinducer of Photobacterium fischeri Luciferase,” Biochemistry, 1981, vol. 20, 2444-2449. |
Eberhard, A. et al., “Synthesis of the lux gene autoinducer in Vibrio fischeri is positively autoregulated,” Archives of Microbiology, 1991, vol. 155, 294-297. |
Gambello, M.J. and Iglewski, “Cloning and Characterization of the Pseudomonas aeruginosa lasR Gene, a Transcriptional Activator of Elastase Expression,” Journal of Bacteriology, 1991, vol. 173, No. 9, 3000-3009. |
Goswami, A. et al., “Microbial Hydroxylation of Quadrone to 8a-Hydroxyquadrone,” Journal of Natural Products, 1987, vol. 50, No. 1, 49-54. |
Hoiby, N. “Pseudomonas aeruginosa Infection in Cystic Fibrosis,” Acta. Path. Microbiol. Scand. Sect. B., 1974, vol. 82, 551-558. |
Iglewski, B.H. and Kabat, D. “NAD-Dependent Inhibition of Protein Synthesis by Pseudomonas aeruginosa Toxin,” PNAS USA 1975, vol. 72, 2284-2288. |
Iglewski, B.H. et al., “Pseudomonas aeruginosa exoenzyme S: An adenosine diphosphate ribosyltransferase distinct from toxin A,” PNAS USA 1978, vol. 75, No. 7, 3211-3215. |
Jones, S. et al., “The lux autoinducer regulates the production of exoenzyme virulence in Erwinia carotovora and Pseudomonas aeruginosa,” EMBO Journal, 1993, vol. 12, No. 6, 2477-2482. |
Kaplan, H.B. and Greenberg, E.P. “Diffusion of Autoinducer Is Involved in Regulation of the Vibrio fischeri Luminescence System,” Journal of Bacteriology, 1985, vol. 163, 1210-1214. |
Kessler, E. and Safrin, M. “Synthesis, Processing and Transport of Pseudomonas aeruginosa Elastase,” Journal of Bacteriology, 1988, vol. 170, No. 11, 5241-5247. |
Meighen, E.A. “Molecular Biology of Bacterial Bioluminescence,” Microbiological Reviews, 1991, vol. 55, No. 1, 123-142. |
NicasT.I. and Iglewski, B.H. “The Contribution of exoproducts to virulence of Pseudomonas aeruginosa,” Canadian Journal of Microbiology, 1985, vol. 31, No. 4, 387-392. |
Passador, L. et al., “Expression of Pseudomas aeruginosa Virulence Genes Requires Cell-to-Cell Communication,” Science, 1993, vol. 260, 1127-1130. |
Pearson, J.P. et al., “Structure of the autoinducer required for expression of Pseudomonas aeruginosa virulence genes,” PNAS USA, 1994, vol. 91, No. 1, 197-201. |
Piper, K.R. et al., “Conjugation factor of Agrobacterium tumefaciens regulates Ti plasmid transfer by autoinduction,” Nature, 1993, vol. 362, 448-450. |
Pirhonen, M. et al., “A small diffusible signal molecule is responsible for the global control of virulence and exoenzyme production in the plant pathogen Erwinia carotovora,” EMBO Journal, 1993, vol. 12, No. 6, 2467-2476. |
Ralling, G. et al., “Growth rate-dependent regulation of RNA polymerase synthesis in Escherichia coli,” Mol. Gen. Genet., 1985, vol. 201, 379-386. |
Reynolds, H.Y. et al., “Pseudomonas aeruginosa Infections: Persisting Problems and Current Research to Find New Therapies,” Annals of Internal Medicine, 1975, vol. 82, No. 6, 819-831. |
Stewart, G.S.A.B. and Williams, P., “Shedding New Light On Food Microbiology,” ASM News, 1993, vol. 59, No. 5, 241-247. |
Wierenga, W. and Skulnick, H.I. “General, Efficient, One-Step Synthesis of β-Keto Esters,” Journal of Organic Chemistry, 1979, vol. 44, No. 2, 310-311. |
Williams, P. et al., “Small molecule-mediated density-dependent control of gene expression in prokaryotes: Bioluminescence and the biosynthesis of carbapenem antibiotics,” FEMS Microbiology, 1992, vol. 100, 161-168. |
Zhang, L. et al., “Agrobacterium conjugation and gene regulation by N-acyl-L-homoserine lactones,” Nature, 1993, vol. 362, 446-448. |
Database Medline Express, US National Library of Medicine, (Bethesda, MD, USA) No. 9730387, C. Reimmann et al., ‘The global activator GacA of Pseudomonas aeruginosa PAO positively controls the production of the autoinducer N-butyryl-homoserine lactone and the formation of the virulence factors pyocyanin, cyanide, and lipase,’ abstract, Molecular Microbiology, Apr. 1997, vol. 24, No. 2, pp. 309-319. |