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Tracey M Gloster

Showing results (11-20 of 58) with videos related to

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Current Opinion in Structural Biology|November 3, 2005
Recent structural insights into the expanding world of carbohydrate-active enzymesGideon J Davies, Tracey M Gloster, Bernard Henrissat
Microbial Genomics|August 14, 2023
cazy_webscraper: local compilation and interrogation of comprehensive CAZyme datasetsEmma E M Hobbs, Tracey M Gloster, Leighton Pritchard
Biochemistry|November 27, 2018
Linear Eyring Plots Conceal a Change in the Rate-Limiting Step in an Enzyme ReactionTeresa F G Machado, Tracey M Gloster, Rafael G da Silva
The Journal of Biological Chemistry|February 8, 2012
Insights into O-linked N-acetylglucosamine ([0-9]O-GlcNAc) processing and dynamics through kinetic analysis of O-GlcNAc transferase and O-GlcNAcase activity on protein substratesDavid L Shen, Tracey M Gloster, Scott A Yuzwa, et al.
Carbohydrate Research|February 17, 2009
Structural insight into the mechanism of streptozotocin inhibition of O-GlcNAcaseYuan He, Carlos Martinez-Fleites, Abigail Bubb, et al.
Chemistry & Biology|September 21, 2010
Elevation of Global O-GlcNAc in rodents using a selective O-GlcNAcase inhibitor does not cause insulin resistance or perturb glucohomeostasisMatthew S Macauley, Xiaoyang Shan, Scott A Yuzwa, et al.
Bioorganic & Medicinal Chemistry Letters|January 29, 2011
6''-Azido-6''-deoxy-UDP-N-acetylglucosamine as a glycosyltransferase substrateAlain Mayer, Tracey M Gloster, Wayne K Chou, et al.
Amino Acids|August 7, 2010
Inhibition of a bacterial O-GlcNAcase homologue by lactone and lactam derivatives: structural, kinetic and thermodynamic analysesYuan He, Abigail K Bubb, Keith A Stubbs, et al.
Chemistry & Biology|October 14, 2008
Divergence of catalytic mechanism within a glycosidase family provides insight into evolution of carbohydrate metabolism by human gut floraTracey M Gloster, Johan P Turkenburg, Jennifer R Potts, et al.
Elife|June 30, 2020
Tetramerisation of the CRISPR ring nuclease Crn3/Csx3 facilitates cyclic oligoadenylate cleavageJanuka S Athukoralage, Stuart McQuarrie, Sabine Grüschow, et al.
Pageof 6

Showing results (11-20 of 58) with videos related to

Sort By:
Pageof 6
Current Opinion in Structural Biology|November 3, 2005
Recent structural insights into the expanding world of carbohydrate-active enzymesGideon J Davies, Tracey M Gloster, Bernard Henrissat
Microbial Genomics|August 14, 2023
cazy_webscraper: local compilation and interrogation of comprehensive CAZyme datasetsEmma E M Hobbs, Tracey M Gloster, Leighton Pritchard
Biochemistry|November 27, 2018
Linear Eyring Plots Conceal a Change in the Rate-Limiting Step in an Enzyme ReactionTeresa F G Machado, Tracey M Gloster, Rafael G da Silva
The Journal of Biological Chemistry|February 8, 2012
Insights into O-linked N-acetylglucosamine ([0-9]O-GlcNAc) processing and dynamics through kinetic analysis of O-GlcNAc transferase and O-GlcNAcase activity on protein substratesDavid L Shen, Tracey M Gloster, Scott A Yuzwa, et al.
Carbohydrate Research|February 17, 2009
Structural insight into the mechanism of streptozotocin inhibition of O-GlcNAcaseYuan He, Carlos Martinez-Fleites, Abigail Bubb, et al.
Chemistry & Biology|September 21, 2010
Elevation of Global O-GlcNAc in rodents using a selective O-GlcNAcase inhibitor does not cause insulin resistance or perturb glucohomeostasisMatthew S Macauley, Xiaoyang Shan, Scott A Yuzwa, et al.
Bioorganic & Medicinal Chemistry Letters|January 29, 2011
6''-Azido-6''-deoxy-UDP-N-acetylglucosamine as a glycosyltransferase substrateAlain Mayer, Tracey M Gloster, Wayne K Chou, et al.
Amino Acids|August 7, 2010
Inhibition of a bacterial O-GlcNAcase homologue by lactone and lactam derivatives: structural, kinetic and thermodynamic analysesYuan He, Abigail K Bubb, Keith A Stubbs, et al.
Chemistry & Biology|October 14, 2008
Divergence of catalytic mechanism within a glycosidase family provides insight into evolution of carbohydrate metabolism by human gut floraTracey M Gloster, Johan P Turkenburg, Jennifer R Potts, et al.
Elife|June 30, 2020
Tetramerisation of the CRISPR ring nuclease Crn3/Csx3 facilitates cyclic oligoadenylate cleavageJanuka S Athukoralage, Stuart McQuarrie, Sabine Grüschow, et al.
Pageof 6