Mutant Pseudomonas putida strains and methods of use thereof

Chemistry: molecular biology and microbiology – Micro-organism – per se ; compositions thereof; proces of... – Bacteria or actinomycetales; media therefor

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C435S262000, C435S262500, C435S877000

Reexamination Certificate

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07070983

ABSTRACT:
The present invention relates to mutant strains ofPseudomonas putidaand their use in the detoxification of industrial and/or toxic waste products.

REFERENCES:
patent: 5948671 (1999-09-01), Mazzola
patent: 6495362 (2002-12-01), Nautiyal
Rui Chen, et al., “Crystallization and Further Characterization of Meta-Hydroxybenzoate 4-Hydroxylase From Comamonas Testosteroni”, Research Communications in Biochemistry, Cell and Molecular Biology, vol. 2, Nos. 3 & 4, (1998), pp. 253-274.
Sonja Isken, et al., “Bacteria Tolerant to Organic Solvents”, Extremophiles, vol. 2, (1998), pp. 229-238.
Takayuki Nishijyo, et al., “the CbrA-CbrB two-component regulatory system controls the utilization of multiple carbon and nitrgoen sources inPseudomonas aeruginosa”, Molecular Microbiology, vol. 40, No. 4, (2001), pp. 917-931.
Joseph G. Leahy, et al., “Microbial Degradation of Hydrocarbons in the Environment”, Microbiological Reviews, vol. 54, No. 3, Sep. 1990, pp. 305-315.
Robert Kuehberger, et al., “Alteration of Ribosomal Protein L6 in Gentamicin-Resistant Strains ofEscherichia coli. Effects of Fidelity of Protein Synthesis”, L6 Mutations Alter Ribosomal Ambiguilty, vol. 18, No. 1, (1979), pp. 187-193.
Akira Ishihama, et al., “Structural and Functional Modulation ofEscherichia coliRNA Polymerase”, Library of Congress Cataloging-in Publication Data, (1990), pp. 145-152.
Akira Inoue, et al., “APseudomonasthrives in high concentration of toluene”Nature, vol. 338, Mar. 16, 1989, pp. 264-266.
Mitchell Singer, et al., “Genetic Evidence for the Interaction between Cluster I and Cluster III Rifampicin Resistant Mutations”, J. Mol. Biol. vol. 231, (1993), pp. 1-5.
David G. Thanassi, et al., Role of Outer Membrane Barrier in Efflux-Mediated Tetracycline Resistance ofEscherichia coli, Journal of Bacteriology, vol. 177, No. 4, (Feb. 1995), pp. 998-1007.
Jan Sikkema, et al., “Mechanisms of Membrane Toxicity of Hydrocarbons”, Microbiological Reviews, vol. 59, No. 2, (Jun. 1995), pp. 201-222.
Maria-Isabel Ramos-Gonzales, et al., “Physiological Characterization ofPseudomonas putidaDOT-TIE Tolerance to p-Hydroxybenzoate”, Applied and Environmental Microbiology, vol. 67, No. 9, (Sep. 2001), pp. 4338-4341.
Jan Roelop van der Meer, et al., “Molecular Mechanisms of Genetic Adaptation to Xenobiotic Compounds”, Microbiological Reviews, vol. 56, No. 4, pp. 677-694.
Kenneth N. Timmis, “Designing Microorganisms for the Treatment of Toxic Wastes”, Annu. Rev. Microbiol, vol. 48, (1994), pp. 525-557.
Frans J. Weber, et al., “Adaptation ofPseudomonas putidaS12 to High Concentrations of Styrene and Other Organic Solvents”, Applied and Environmental Microbioloty, vol. 59, No. 10, (Oct. 1993), pp. 3502-3504.
B.J. Wallace, et al., “Mechanism of Action of Antibacterial Agents”, vol. 5/Part 1, (1979), pp. 272-303.
Norberto J. Palleroni, “The Prokaryotes, Second Edition”, vol. 3, pp. 3071-3085.
Jeffery Vieira, et al., “Production of Single-Stranded Plasmid DNA”, Methods in Enzymology, vol. 153, (1987), pp. 3-11.
Ding Jun Jin, et al., “Mapping and Sequencing of Mutations in theEscherichia colirpoB Gene that Lead to Rifampicin Resistance”, J. Mol. Biol., vol. 202, (1988), pp. 45-58.
Luca Comai, et al., “A New Technique for Genetic Engineering ofAgrobacteriumTi Plasmid”, Plasmid, vol. 10, (1983), pp. 21-30.
P. Buckel, et al. “Alteration of Ribosomal Protein L6 in Mutants ofEscherichia coliResistant to Gentamicin”, Molec. Gen. Genet, vol. 158, (1977), pp. 47-54.
K. Ochi, et al., “Molecular and functional analysis of the ribosomal L11 and S12 protein genes (rplKl) and (rpsL) ofStreptomyces coelicolorA3(2)”, Mol Gen Genet, vol. 256, (1997), pp. 488-498.
J. Xu, et al., “A rifampicin resistance mutation in the rpoB gene confers ppGpp-independent antibiotic production inStreptomyces coelicolorA3(2)”,Mol Genet Genomics, vol. 268, (2002), pp. 179-189.
Keiichi Hosokawa, et al. “Regulation of Synthesis of Early Enzymes of p-Hydroxybenzoate Pathway inPseudomonas putida”, vol. 245, No. 20, Issue of Oct. 25, 1970, pp. 5304-5308.
Jasper Kieboom, et al., “Identification and molecular characterization of an efflux system involved inPseudomonas putidaS12 mutidrug resistance”, Microbiology, vol. 147, (2001), pp. 43-51.
The Journal of Antibiotics, “A Novel Method for ImprovingStreptomyces coelicolorA3(2) for Production of Actinorhodin by Introduction of rpsL (Encoding Ribosomal Protein S12) Mutations Conferring Resistance toStreptomycin”, vol. 50, No. 6, Jun. 1997.
Marion Finken, et al., “Molecular basis ofStreptomycinresistance inMycobacterium tuberculosis: alterations of the ribosomal protein S12 gene and point mutations within a functional 16S ribosomal RNA pseudiknot”, vol. 9, No. 6, (1993), pp. 1239-1246.
Haifeng Hu, et al., “Activation of Antibiotic Biosynthesis by Specified Mutations in the rpoB Gene (Encoding the RNA Polymerase βSubunit) ofStreptomyces lividans”, Journal of Bacteriology, vol. 184, No. 14, (Jul. 2002), pp. 3984-3991.
Takashi Inaoka, et al., “Construction of an In Vivo Nonsense Readthrough Assay System and Functional Analysis of Ribosomal Proteins S12, S4, and S5 inBacillus subtilis”, Journal of Bacteriology, vol. 183, No. 17, (Sep. 2001), pp. 4958-4963.
Hiroshi Nikaido “Multidrug Effux Pumps of Gram-Negative Bacteria”, Journal of Bacteriology, vol. 178, No. 20, (Oct. 1996), pp. 5853-5859.
Haifeng Hu, et al. ,“Novel Approach for Improving the Productivity of Antibiotic-Producing Strains by Inducing Combined Resistant Mutations”, Applied and Environmental Microbiology, vol. 67, No. 4, (Apr. 2001), pp. 1885-1892.
G. Rasul Chaudhry, et al., “Biodegradation of Halogenated Organic Compounds”, Microbiological Reviews, vol. 55, No. 1, (Mar. 1991), pp. 59-79.
M. A. Kertesz, et al., “Desulfurization and desulfonation: applications of sulfur-controlled gene expression in bacteria”, Appl. Microbiol Biotechnol, vol. 57, (2001), pp. 460-466.
Abraham Esteve-Nunez, et al., “Biological Degradation of 2,4,6-Trinitrotoluene”, Microbiology and Molecular Biology Reviews, vol. 65, No. 3, (Sep. 2001), pp. 335-352.
Eric Cundliffe, “Recognition Sites for Antibiotics within rRNA”, (1990), pp. 479-490.
Teofila C. Beaman, et al., “Specificity and Control of Uptake of Purines and Other Compounds inBacillus subtitis”, vol. 156, No. 3, (Dec. 1983), pp. 1107-1117.
David G. Thanassi, et al., “Role of Outer Membrane Barrier in Efflux-Mediated Tetracycline Resistance ofEscherichia coli”, vol. 177, No. 4, (Feb. 1995), pp. 998-1007.
Kunihiko Nishino, et al., “Analysis of a Complete Library of Putative Drug Transporter Genes inEscherichia coli”, vol. 183, No. 20, (Oct. 2001), pp. 5803-5812.
Jun Shima, et al., “Induction of Actinorhodin Production by rpsL (Encoding Ribosomal Protein S12) Mutations that ConferStreptomycinResistance inStreptomyces lividansandStreptomyces coelicolorA3(2)”, Journal of Bacteriology, vol. 178, No. 24, (Dec. 1996), pp. 7276-7284.
Caroline S. Harwood, et al., “Identification of the pcaRKF Gene Cluster fromPseudomonas putida: Involvement in Chemotaxis, Biodegradation, and Transport of 4-Hydroxybenzoate”, Journal of Bacteriology, vol. 176, No. 21, (Nov. 1994), pp. 6474-6488.
Tomoyuki Mine, et al., “Expression inEscherichia coliof a New Multidrug Efflux Pump MexXY, fromPseudomonas aeruginosa”, Antimicrobial Agents and Chemotherapy, vol. 43, No. 2, (Feb. 1999), pp. 415-417.
Rikizo Aono, et al., “Involvement of Outer Membrane Protein TolC, a Possible member of themar-soxRegulan, in Maintenance and Improvement of Organic Solvent Tolerance ofEscherichia coliK-12”, Journal of Bacteriology, vol.

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