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H J Gilbert

Showing results (91-100 of 115) with videos related to

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The Biochemical Journal|September 1, 1993
A modular esterase from Pseudomonas fluorescens subsp. cellulosa contains a non-catalytic cellulose-binding domainL M Ferreira, T M Wood, G Williamson, et al.
Gene|January 14, 1998
Co-integration and expression of bacterial and genomic transgenes in the pancreatic and intestinal tissues of transgenic miceS Ali, C M Fontes, G P Hazlewood, et al.
Applied Microbiology and Biotechnology|August 5, 2000
A comparison of enzyme-aided bleaching of softwood paper pulp using combinations of xylanase, mannanase and alpha-galactosidaseJ H Clarke, K Davidson, J E Rixon, et al.
The Biochemical Journal|October 15, 1996
Evidence that linker sequences and cellulose-binding domains enhance the activity of hemicellulases against complex substratesG W Black, J E Rixon, J H Clarke, et al.
FEMS Microbiology Letters|January 1, 1995
Cellulases and hemicellulases of the anaerobic fungus Piromyces constitute a multiprotein cellulose-binding complex and are encoded by multigene familiesB R Ali, L Zhou, F M Graves, et al.
Biochemistry|December 17, 1996
Mannanase A from Pseudomonas fluorescens ssp. cellulosa is a retaining glycosyl hydrolase in which E212 and E320 are the putative catalytic residuesD N Bolam, N Hughes, R Virden, et al.
Journal of Biotechnology|October 23, 1997
Cellulose binding domains and linker sequences potentiate the activity of hemicellulases against complex substratesG W Black, J E Rixon, J H Clarke, et al.
The Biochemical Journal|August 1, 1995
The non-catalytic cellulose-binding domain of a novel cellulase from Pseudomonas fluorescens subsp. cellulosa is important for the efficient hydrolysis of AvicelJ Hall, G W Black, L M Ferreira, et al.
The Journal of Biological Chemistry|January 31, 1997
Key residues in subsite F play a critical role in the activity of Pseudomonas fluorescens subspecies cellulosa xylanase A against xylooligosaccharides but not against highly polymeric substrates such as xylanS J Charnock, J H Lakey, R Virden, et al.
Biochemistry|May 23, 2000
The X6 "thermostabilizing" domains of xylanases are carbohydrate-binding modules: structure and biochemistry of the Clostridium thermocellum X6b domainS J Charnock, D N Bolam, J P Turkenburg, et al.
Pageof 12

Showing results (91-100 of 115) with videos related to

Sort By:
Pageof 12
The Biochemical Journal|September 1, 1993
A modular esterase from Pseudomonas fluorescens subsp. cellulosa contains a non-catalytic cellulose-binding domainL M Ferreira, T M Wood, G Williamson, et al.
Gene|January 14, 1998
Co-integration and expression of bacterial and genomic transgenes in the pancreatic and intestinal tissues of transgenic miceS Ali, C M Fontes, G P Hazlewood, et al.
Applied Microbiology and Biotechnology|August 5, 2000
A comparison of enzyme-aided bleaching of softwood paper pulp using combinations of xylanase, mannanase and alpha-galactosidaseJ H Clarke, K Davidson, J E Rixon, et al.
The Biochemical Journal|October 15, 1996
Evidence that linker sequences and cellulose-binding domains enhance the activity of hemicellulases against complex substratesG W Black, J E Rixon, J H Clarke, et al.
FEMS Microbiology Letters|January 1, 1995
Cellulases and hemicellulases of the anaerobic fungus Piromyces constitute a multiprotein cellulose-binding complex and are encoded by multigene familiesB R Ali, L Zhou, F M Graves, et al.
Biochemistry|December 17, 1996
Mannanase A from Pseudomonas fluorescens ssp. cellulosa is a retaining glycosyl hydrolase in which E212 and E320 are the putative catalytic residuesD N Bolam, N Hughes, R Virden, et al.
Journal of Biotechnology|October 23, 1997
Cellulose binding domains and linker sequences potentiate the activity of hemicellulases against complex substratesG W Black, J E Rixon, J H Clarke, et al.
The Biochemical Journal|August 1, 1995
The non-catalytic cellulose-binding domain of a novel cellulase from Pseudomonas fluorescens subsp. cellulosa is important for the efficient hydrolysis of AvicelJ Hall, G W Black, L M Ferreira, et al.
The Journal of Biological Chemistry|January 31, 1997
Key residues in subsite F play a critical role in the activity of Pseudomonas fluorescens subspecies cellulosa xylanase A against xylooligosaccharides but not against highly polymeric substrates such as xylanS J Charnock, J H Lakey, R Virden, et al.
Biochemistry|May 23, 2000
The X6 "thermostabilizing" domains of xylanases are carbohydrate-binding modules: structure and biochemistry of the Clostridium thermocellum X6b domainS J Charnock, D N Bolam, J P Turkenburg, et al.
Pageof 12