Weaver, L. et al., J. Bacter., vol. 172, No. 11, pp. 6581-6584, Nov. 1990.* |
Attwood, T., Science, vol. 290, No. 5491, pp. 471-473, Nov. 1990.* |
Brown, K.D. et al., “Transport And Utilization Of The Biosynthetic Intermediate Shikimic Acid In Escherichia coli,” Biochim. Biophys. Acta 428:550-562 (1976). |
Draths, K.M. et al., “Biocatalysis And Nineteenth Century Organic Chemistry: Conversion Of D-Glucose Into Quinoid Organics,” J. Am. Chem. Soc. 114(24):9725-9726 (1992). |
Draths, K.M. et al., “Environmentally Compatible Synthesis Of Catechol From D-Glucose,” J. Am. Chem. Soc. 117:2395-2400 (1995). |
Dell, K.A. et al., “Identification And Removal Of Impediments To Biocatalytic Synthesis Of Aromatics From D-Glucose: Rate-Limiting Enzymes In The Common Pathway Of Aromatic Amino Acid Biosynthesis,” J. Am. Chem. Soc. 115:11581-11589 (1993). |
Haslem, E., “Chemistry Of Intermediates In The Common Pathway,” Shikimic Acid: Metabolism and Metabolites, Wiley & Sons, New York, pp. 40-42 (1993). |
Kim. C.U. et al., “Influenza Neuraminidase Inhibitors Possessing A Novel Hydrophobic interaction In The Enzyme Active Site: Design, Synthesis, And Structural Analysis Of Carbocyclic Sialic Acid Analogues With Potent Anti-Influenza Activity,” J. Am. Chem. Soc. 119:681-690 (1997). |
Konstaninov, K.B. et al., “Glucose Feeding Strategy Accounting For The Decreasing Oxidative Capacity Of Recombinant Escherichia coli In Fed-Batch Cultivation For Phenylalamine Production,” J. Ferment. Bioeng. 70:253-260 (1990). |
Konstantinov, K.B. et al., “Physiologically Motivated Strategies For Control Of The Fed-Batch Cultivation Of Recombinant Escherichia coli For Phenylalanine Production,” J. Ferment. Bioeng. 71:350-355 (1991). |
Mitsuhashi, S. et al., “Aromatic Biosynthesis—XIII. Conversion Of Quinic Acid To 5-Dehydroquinic Acid By Quinic Dehydrogenase,” Biochim. Biophys. Acta 15:268-280 (1954). |
Pittard, J. et al., “Gene Controlling The Uptake Of Shikimic Acid By Escherichia coli,” J. Bacteriol. 92:1070-1075 (1966). |
Rohloff, J.C. et al., “Practical Total Synthesis Of The Anti-Influenza Drug GS-4104,” J. Org. Chem. 63:4545-4550 (1998). |
Tan, D.S. et al., “Stereoselective Synthesis Of Over Two Million Compounds Having Structural Features Both Reminiscent Of Natural Products And Compatible With Miniaturized Cell-Based Assays,” J. Am. Chem. Soc. 120:8565-8566 (1998). |
EP 99 95 6926 Supplementary European Search Report. |