Multicellular living organisms and unmodified parts thereof and – Plant – seedling – plant seed – or plant part – per se – Higher plant – seedling – plant seed – or plant part
Reexamination Certificate
2006-07-04
2006-07-04
Kubelik, Anne (Department: 1638)
Multicellular living organisms and unmodified parts thereof and
Plant, seedling, plant seed, or plant part, per se
Higher plant, seedling, plant seed, or plant part
C800S278000
Reexamination Certificate
active
07071384
ABSTRACT:
A method for commercial production and use of heterologous laccase from plant seed in commercial processes is shown. The method comprises degerminating the germ portion of the seed and using the germ as the source of laccase in a commercial process. Increased concentration of laccase on a dry weight basis is achieved. Increased cost recovery is obtained in the process.
REFERENCES:
patent: 5420034 (1995-05-01), Kridl et al.
patent: 5480801 (1996-01-01), Wahleithner et al.
patent: 5618482 (1997-04-01), Olesen et al.
patent: 5667531 (1997-09-01), Yaver et al.
patent: 5693506 (1997-12-01), Rodriquez
patent: 5767379 (1998-06-01), Baszczynski et al.
patent: 5770418 (1998-06-01), Yaver et al.
patent: 5804694 (1998-09-01), Bruce et al.
patent: 5889189 (1999-03-01), Rodriguez et al.
patent: 6252134 (2001-06-01), Vasil et al.
patent: 0255378 (1988-08-01), None
patent: 9400992 (1994-01-01), None
patent: 9640949 (1996-12-01), None
patent: 9709431 (1997-03-01), None
patent: 9710347 (1997-03-01), None
patent: 9717453 (1997-03-01), None
patent: 9745549 (1997-12-01), None
patent: 9811205 (1998-08-01), None
patent: WO 00/20615 (2000-04-01), None
patent: 0005381 (2000-05-01), None
Hood et al, 2003, Plant Biotechnol. J. 1:129-140.
Fiedler, U. and Conrad, U. “High-Level production and Long-Term Storage of Engineered Antibodies in Transgenic Tobacco Seeds.” 1995, Bio/Technology, vol. 13, pp. 1090-1093.
Baumlein, H. et al., “Upstream sequences regulating legumin gene expression in heterologous transgenic plants.” 1991, Mol Gen Genet, vol. 225 pp. 121-128.
Altenbach, S. B. et al., “Accumulation of a Brazil nut albmin in seeds of transgenic canola results in enhanced levels of seed protein methionine.” 1992, Plant Molecular Biology, vol. 18, pp. 235-245.
Vandekerckhove, J. et al. “Enkephalins Produced in Transgenic Plants Using Modified 2S Seed Storage Proteins.” 1989, Bio/Technology, vol. 7 pp. 929-932.
Roberts, B and Paterson, B. M. “Efficient Translation of Tobacco Mosaic Virus RNA and Rabbit Globi 9S RNA in a Cell-Free System from commercial Wheat Germ.” 1973, Proc,. Nat. Acad. Sci. USA, vol. 70, pp. 2330-2334.
Kusnadi, A. R. et al., “Production and purification of Two Recombinant Proteins from Transgenic Com.” 1998, Biotechnol. Prog., vol. 14, pp. 149-155.
Ong, Edgar, et al.; “Cloning and sequence analysis of two laccase complementary DNA's from the ligninolytic basidiomyceteTrametes versicolor.”, Gene;196:113-119 (1997).
Crestini, Claudia, et al.; “The early biodegeneration pathways of residual kraft lingin model compounds with laccase.”, ISWPC (1997).
Bourbonnais, Robert, et al.; “Enzymztic delignification of craft pulp using laccase and a mediator”, Tappi Journal, vol. 79:No. 6, Jun. (1996) p. 199-204.
Saloheimo, Markku, et al.; “Heterologous production of a ligninolytic enzyme: expression of thePhlebia radiatalaccase gene inTrichoderma reesei”, Bio/Thechnology vol. 9, Oct. 1991 p. 987-990.
Bourbonnais, Robert, et al.; “Lignin Oxidation by Laccase Isozymes fromTrametes versicolorand role of the Mediator 2,2' -Azinobis(3-Ethlbenzthiazoline-6-Sulfonate) in kraft Lignin Depolymerization”, Applied and Environmental Microbiology, May 1995, p. 1879-1880; vol. 61, No. 5.
Berka, Randy, et al.; “Characterization of the gene encoding an extracellular laccase ofMyceliphthora thermophilaand analysis of the recominant enzyme expressed inAspergillus oryzae”, Applied and Environmental Microbiology, Aug. 1997, p. 3151-3157; vol. 63, No. 8.
Call, H.P., et al.; “History, overview and applications of mediated lignolytic systems, especially laccase-mediator-systems (Lignozym-Process)”, Journal of Biotechnology 53 (1997) p. 163-202.
Yaropolov, A.I., et al.;“Laccase: Properties, Catalytic Machanism, and Applicability”, Applied Biochemisty and biotechnology vol. 49, 1994 p. 257-280.
Amann, et al.; “The Lignozym Process- coming closer to the Mill”, 1997 ISWPC.
“Technical and Market Opportunities for glued wood products”, Adhesives Age May 31, 1996 p. 6-9.
Archibald, F.S., et al.; “Kraft pulp bleaching and delignification by Trametes Versicolor.” Journal of Biotecnology, vol. 53 (1997) p. 215-236.
Solomon, Edward, et al.; “Multicopper Oxidases and Oxygenases”, Chem. Rev 1996, 96, 2536-2605.
Kusnadi, A. R. et al., “Processing of Transgenic Corn Seed and its Effect on the Recovery of Recombinant B-Glucuronidase.” 1998, Biotechnol. Bioengeneering, vol. 60, pp. 44-52.
Hood, E. E., et al.: “Commercial Production of avidin from Transgenic Maize”, In Vitro,, vol. 32, No. 3, Jun. 27, 1996, pp. Pt. 2-67A.
Gallusci, P., et al.: “Differences in Cell Type-Specific Expression of the Gene Opaque 2 in Maize and Transgenic Tobacco”, Molecular and General Genetics vol. 244, 1994, pp. 391-400.
Goldberg, R.B. et al, “Regulation of Gene Expression During Plant Embryogenesis”, CELL, vol. 56, Jan. 27, 1989, pp. 149-160.
Skokut, T.A., et al.: “Expression of a Coriander Palmitoyl-ACP Delta 4 Desaturase in Transgenic Maize”, Supplement to Plant Physiology vol. 111, No. 2, 1996, p. 167.
Cornejo, M-J., et al.: “Activity of a Maize Ubiquitin Promoter in Transgenic Rice”, Plant Molecular Biology vol. 23, 1993, pp. 567-581.
Hood, E.E., et al., “Commercial Production of Gus from Transgenic Maize Seed”, In Vitro vol. 33 No. 3, Jun. 14, 1997, pp. Pt 2-55A.
Bruce, et al. “Maize Uiquitin 1::Gus Expression in Transgenic Maize” In Vitro vol. 32 No. 3, Jun. 22-27, pp. 72A.
Holtorf et al. “Comparison of Different Constitutive and Inducible Promoters For the Overexpression of Transgenes inArabidopsis thaliana” Plant Mol. Biol. 29:637-646, 1995.
Hood et al. “Commerical Production of Avidin From Transgenic Maize: Characterization of Transformat, Production, Processing, Extraction and Purification” Mol. Breeding 3:291-307 (1997).
Kusnadi et al. “Recovery of Recominant β-Glucuronidase from Transgenic Corn” The Proceedings of the 26THAnnual Biochemical Engineering Erickson, L.E., Ed.; Kansas State University, Manhattan Kansas pp. 143-152.
Kusnadi, et al. “Recovery of Recombinant β-Glucuronidase from Transgenic Corn” The Proceedings of the 26THAnnual Biochemical Engineering Erickson, L.E. Ed.: Kansas State University, Manhattan Kansas pp. 143-152 (1997) and orally presented Sep. 21, 1996.
Bailey Piatchek Michele
Hood Elizabeth E.
Howard John A.
Genencor International Inc.
Genencor International Inc.
Kubelik Anne
LandOfFree
Methods for commercial production of heterologous laccase in... does not yet have a rating. At this time, there are no reviews or comments for this patent.
If you have personal experience with Methods for commercial production of heterologous laccase in..., we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and Methods for commercial production of heterologous laccase in... will most certainly appreciate the feedback.
Profile ID: LFUS-PAI-O-3524372