Authors:
GOLLHOFER D
NIDETZKY B
FUERLINGER M
KULBE KD
Citation: D. Gollhofer et al., EFFICIENT PROTECTION OF GLUCOSE-FRUCTOSE OXIDOREDUCTASE FROM ZYMOMONAS-MOBILIS AGAINST IRREVERSIBLE INACTIVATION DURING ITS CATALYTIC ACTION, Enzyme and microbial technology, 17(3), 1995, pp. 235-240
Authors:
WEINHAUSEL A
NIDETZKY B
KYSELA C
KULBE KD
Citation: A. Weinhausel et al., APPLICATION OF ESCHERICHIA-COLI MALTODEXTRIN-PHOSPHORYLASE FOR THE CONTINUOUS PRODUCTION OF GLUCOSE-1-PHOSPHATE, Enzyme and microbial technology, 17(2), 1995, pp. 140-146
Authors:
HALTRICH D
LAUSSAMAYER B
STEINER W
NIDETZKY B
KULBE KD
Citation: D. Haltrich et al., CELLULOLYTIC AND HEMICELLULOLYTIC ENZYMES OF SCLEROTIUM-ROLFSII - OPTIMIZATION OF THE CULTURE-MEDIUM AND ENZYMATIC-HYDROLYSIS OF LIGNOCELLULOSIC MATERIAL, Bioresource technology, 50(1), 1994, pp. 43-50
Citation: B. Nidetzky et al., CELLULOSE HYDROLYSIS BY THE CELLULASES FROM TRICHODERMA-REESEI - ADSORPTIONS OF 2 CELLOBIOHYDROLASES, 2 ENDOCELLULASES AND THEIR CORE PROTEINS ON FILTER-PAPER AND THEIR RELATION TO HYDROLYSIS, Biochemical journal, 303, 1994, pp. 817-823
Citation: B. Nidetzky et al., CELLULOSE HYDROLYSIS BY THE CELLULASES FROM TRICHODERMA-REESEI - A NEW MODEL FOR SYNERGISTIC INTERACTION, Biochemical journal, 298, 1994, pp. 705-710
Authors:
WEINHAUSEL A
NIDETZKY B
ROHRBACH M
BLAUENSTEINER B
KULBE KD
Citation: A. Weinhausel et al., A NEW MALTODEXTRIN PHOSPHORYLASE FROM CORYNEBACTERIUM-CALLUNAE FOR THE PRODUCTION OF GLUCOSE-1-PHOSPHATE, Applied microbiology and biotechnology, 41(5), 1994, pp. 510-516
Authors:
NIDETZKY B
ZACHARIAE W
GERCKEN G
HAYN M
STEINER W
Citation: B. Nidetzky et al., HYDROLYSIS OF CELLOOLIGOSACCHARIDES BY TRICHODERMA-REESEI CELLOBIOHYDROLASES - EXPERIMENTAL-DATA AND KINETIC MODELING, Enzyme and microbial technology, 16(1), 1994, pp. 43-52
Citation: B. Nidetzky et M. Claeyssens, SPECIFIC QUANTIFICATION OF TRICHODERMA-REESEI CELLULASES IN RECONSTITUTED MIXTURES AND ITS APPLICATION TO CELLULASE-CELLULOSE BINDING-STUDIES, Biotechnology and bioengineering, 44(8), 1994, pp. 961-966
Citation: B. Nidetzky et W. Steiner, A NEW APPROACH FOR MODELING CELLULASE CELLULOSE ADSORPTION AND THE KINETICS OF THE ENZYMATIC-HYDROLYSIS OF MICROCRYSTALLINE CELLULOSE, Biotechnology and bioengineering, 42(4), 1993, pp. 469-479