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G Withers

Showing results (291-300 of 487) with videos related to

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Chemistry & Biology|May 19, 2001
Directed evolution of new glycosynthases from Agrobacterium beta-glucosidase: a general screen to detect enzymes for oligosaccharide synthesisC Mayer, D L Jakeman, M Mah, et al.
Biochemistry|January 5, 2002
Probing the role of the chloride ion in the mechanism of human pancreatic alpha-amylaseShin Numao, Robert Maurus, Gary Sidhu, et al.
The Journal of Biological Chemistry|June 16, 2009
Structural and kinetic characterizations of the polysialic acid O-acetyltransferase OatWY from Neisseria meningitidisHo Jun Lee, Bojana Rakić, Michel Gilbert, et al.
European Journal of Biochemistry|December 6, 2000
Differential mechanism-based labeling and unequivocal activity assignment of the two active sites of intestinal lactase/phlorizin hydrolaseJ C Arribas, A G Herrero, M Martín-Lomas, et al.
The Journal of Biological Chemistry|July 5, 1993
Glu280 is the nucleophile in the active site of Clostridium thermocellum CelC, a family A endo-beta-1,4-glucanaseQ Wang, D Tull, A Meinke, et al.
Biochemistry|August 26, 1998
Snapshots along an enzymatic reaction coordinate: analysis of a retaining beta-glycoside hydrolaseG J Davies, L Mackenzie, A Varrot, et al.
Virus Research|August 7, 2015
Difluorosialic acids, potent novel influenza virus neuraminidase inhibitors, induce fewer drug resistance-associated neuraminidase mutations than does oseltamivirS-H Sheldon Tai, Olga Agafitei, Zhizeng Gao, et al.
Biochemistry|August 22, 2001
Dissecting the electrostatic interactions and pH-dependent activity of a family 11 glycosidaseM D Joshi, G Sidhu, J E Nielsen, et al.
Chembiochem : a European Journal of Chemical Biology|October 24, 2007
Specificity fingerprinting of retaining beta-1,4-glycanases in the Cellulomonas fimi secretome using two fluorescent mechanism-based probesOmid Hekmat, Christine Florizone, Young-Wan Kim, et al.
Nature Chemical Biology|June 16, 2009
Designer enzymes for glycosphingolipid synthesis by directed evolutionSusan M Hancock, Jamie R Rich, Matthew E C Caines, et al.
Pageof 49

Showing results (291-300 of 487) with videos related to

Sort By:
Pageof 49
Chemistry & Biology|May 19, 2001
Directed evolution of new glycosynthases from Agrobacterium beta-glucosidase: a general screen to detect enzymes for oligosaccharide synthesisC Mayer, D L Jakeman, M Mah, et al.
Biochemistry|January 5, 2002
Probing the role of the chloride ion in the mechanism of human pancreatic alpha-amylaseShin Numao, Robert Maurus, Gary Sidhu, et al.
The Journal of Biological Chemistry|June 16, 2009
Structural and kinetic characterizations of the polysialic acid O-acetyltransferase OatWY from Neisseria meningitidisHo Jun Lee, Bojana Rakić, Michel Gilbert, et al.
European Journal of Biochemistry|December 6, 2000
Differential mechanism-based labeling and unequivocal activity assignment of the two active sites of intestinal lactase/phlorizin hydrolaseJ C Arribas, A G Herrero, M Martín-Lomas, et al.
The Journal of Biological Chemistry|July 5, 1993
Glu280 is the nucleophile in the active site of Clostridium thermocellum CelC, a family A endo-beta-1,4-glucanaseQ Wang, D Tull, A Meinke, et al.
Biochemistry|August 26, 1998
Snapshots along an enzymatic reaction coordinate: analysis of a retaining beta-glycoside hydrolaseG J Davies, L Mackenzie, A Varrot, et al.
Virus Research|August 7, 2015
Difluorosialic acids, potent novel influenza virus neuraminidase inhibitors, induce fewer drug resistance-associated neuraminidase mutations than does oseltamivirS-H Sheldon Tai, Olga Agafitei, Zhizeng Gao, et al.
Biochemistry|August 22, 2001
Dissecting the electrostatic interactions and pH-dependent activity of a family 11 glycosidaseM D Joshi, G Sidhu, J E Nielsen, et al.
Chembiochem : a European Journal of Chemical Biology|October 24, 2007
Specificity fingerprinting of retaining beta-1,4-glycanases in the Cellulomonas fimi secretome using two fluorescent mechanism-based probesOmid Hekmat, Christine Florizone, Young-Wan Kim, et al.
Nature Chemical Biology|June 16, 2009
Designer enzymes for glycosphingolipid synthesis by directed evolutionSusan M Hancock, Jamie R Rich, Matthew E C Caines, et al.
Pageof 49