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H J Gilbert

Showing results (71-80 of 115) with videos related to

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The Journal of Biological Chemistry|May 31, 2001
Crystal structure of mannanase 26A from Pseudomonas cellulosa and analysis of residues involved in substrate bindingD Hogg, E J Woo, D N Bolam, et al.
The Biochemical Journal|January 15, 1994
Intronless celB from the anaerobic fungus Neocallimastix patriciarum encodes a modular family A endoglucanaseL Zhou, G P Xue, C G Orpin, et al.
FEBS Letters|May 6, 1991
Structural analysis by circular dichroism of some enzymes involved in plant cell wall degradationP W Goodenough, D C Clark, A J Durrant, et al.
Applied and Environmental Microbiology|August 1, 1989
Expression of a Clostridium thermocellum endoglucanase gene in Lactobacillus plantarumE E Bates, H J Gilbert, G P Hazlewood, et al.
Applied and Environmental Microbiology|January 1, 1997
An Aspergillus niger esterase (ferulic acid esterase III) and a recombinant Pseudomonas fluorescens subsp. cellulosa esterase (Xy1D) release a 5-5' ferulic dehydrodimer (diferulic acid) from barley and wheat cell wallsB Bartolomé, C B Faulds, P A Kroon, et al.
Biochemistry|February 2, 2000
Trp22, Trp24, and Tyr8 play a pivotal role in the binding of the family 10 cellulose-binding module from Pseudomonas xylanase A to insoluble ligandsT Ponyi, L Szabó, T Nagy, et al.
FEMS Microbiology Letters|November 7, 2000
alpha-Galactosidase A from Pseudomonas fluorescens subsp. cellulosa: cloning, high level expression and its role in galactomannan hydrolysisJ R Halstead, M P Fransen, R Y Eberhart, et al.
The Biochemical Journal|August 5, 1999
Homologous xylanases from Clostridium thermocellum: evidence for bi-functional activity, synergism between xylanase catalytic modules and the presence of xylan-binding domains in enzyme complexesA C Fernandes, C M Fontes, H J Gilbert, et al.
The Biochemical Journal|November 15, 1995
Novel cellulose-binding domains, NodB homologues and conserved modular architecture in xylanases from the aerobic soil bacteria Pseudomonas fluorescens subsp. cellulosa and Cellvibrio mixtusS J Millward-Sadler, K Davidson, G P Hazlewood, et al.
Molecular Microbiology|January 1, 1994
Evidence for a general role for high-affinity non-catalytic cellulose binding domains in microbial plant cell wall hydrolasesS J Millward-Sadler, D M Poole, B Henrissat, et al.
Pageof 12

Showing results (71-80 of 115) with videos related to

Sort By:
Pageof 12
The Journal of Biological Chemistry|May 31, 2001
Crystal structure of mannanase 26A from Pseudomonas cellulosa and analysis of residues involved in substrate bindingD Hogg, E J Woo, D N Bolam, et al.
The Biochemical Journal|January 15, 1994
Intronless celB from the anaerobic fungus Neocallimastix patriciarum encodes a modular family A endoglucanaseL Zhou, G P Xue, C G Orpin, et al.
FEBS Letters|May 6, 1991
Structural analysis by circular dichroism of some enzymes involved in plant cell wall degradationP W Goodenough, D C Clark, A J Durrant, et al.
Applied and Environmental Microbiology|August 1, 1989
Expression of a Clostridium thermocellum endoglucanase gene in Lactobacillus plantarumE E Bates, H J Gilbert, G P Hazlewood, et al.
Applied and Environmental Microbiology|January 1, 1997
An Aspergillus niger esterase (ferulic acid esterase III) and a recombinant Pseudomonas fluorescens subsp. cellulosa esterase (Xy1D) release a 5-5' ferulic dehydrodimer (diferulic acid) from barley and wheat cell wallsB Bartolomé, C B Faulds, P A Kroon, et al.
Biochemistry|February 2, 2000
Trp22, Trp24, and Tyr8 play a pivotal role in the binding of the family 10 cellulose-binding module from Pseudomonas xylanase A to insoluble ligandsT Ponyi, L Szabó, T Nagy, et al.
FEMS Microbiology Letters|November 7, 2000
alpha-Galactosidase A from Pseudomonas fluorescens subsp. cellulosa: cloning, high level expression and its role in galactomannan hydrolysisJ R Halstead, M P Fransen, R Y Eberhart, et al.
The Biochemical Journal|August 5, 1999
Homologous xylanases from Clostridium thermocellum: evidence for bi-functional activity, synergism between xylanase catalytic modules and the presence of xylan-binding domains in enzyme complexesA C Fernandes, C M Fontes, H J Gilbert, et al.
The Biochemical Journal|November 15, 1995
Novel cellulose-binding domains, NodB homologues and conserved modular architecture in xylanases from the aerobic soil bacteria Pseudomonas fluorescens subsp. cellulosa and Cellvibrio mixtusS J Millward-Sadler, K Davidson, G P Hazlewood, et al.
Molecular Microbiology|January 1, 1994
Evidence for a general role for high-affinity non-catalytic cellulose binding domains in microbial plant cell wall hydrolasesS J Millward-Sadler, D M Poole, B Henrissat, et al.
Pageof 12