David H. Kwan

Affiliations: 
2015- Biology Concordia University (Canada), Montreal, QC, Canada 
Area:
Synthetic Biology
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"David Kwan"

Parents

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Peter F. Leadlay grad student 2005-2009 Cambridge
Stephen G. Withers post-doc 2009-2015 UBC
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Publications

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Ouadhi S, López DMV, Mohideen FI, et al. (2022) Engineering the Enzyme Toolbox to Tailor Glycosylation in Small Molecule Natural Products and Protein Biologics. Protein Engineering, Design & Selection : Peds
Zhao J, Si Y, Han Z, et al. (2020) Corrigendum: Facile Formation of β-thioGlcNAc Linkages to Thiol-Containing Sugars, Peptides, and Proteins using a Mutant GH20 Hexosaminidase. Angewandte Chemie (International Ed. in English). 59: 8752
Soroko M, Kwan DH. (2020) Enzymatic Synthesis of a Fluorogenic Reporter Substrate and the Development of a High-Throughput Assay for Fucosyltransferase VIII Provide a Toolkit to Probe and Inhibit Core Fucosylation. Biochemistry
Leclerc LMY, Soffer G, Kwan DH, et al. (2019) A fucosyltransferase inhibition assay using image-analysis and digital microfluidics. Biomicrofluidics. 13: 034106
Zhang X, Chen F, Petrella A, et al. (2019) A high-throughput glycosyltransferase inhibition assay to identify molecules targeting fucosylation in cancer cell-surface modification. Acs Chemical Biology
Tegl G, Hanson J, Chen HM, et al. (2018) Facile Formation of β-thioGlcNAc Linkages to Thiol-Containing Sugars, Peptides, and Proteins using a Mutant GH20 Hexosaminidase. Angewandte Chemie (International Ed. in English)
Kwan DH. (2017) Structure-Guided Directed Evolution of Glycosidases: A Case Study in Engineering a Blood Group Antigen-Cleaving Enzyme. Methods in Enzymology. 597: 25-53
Kwan DH, Jin Y, Jiang J, et al. (2016) Chemoenzymatic synthesis of 6-phospho-cyclophellitol as a novel probe of 6-phospho-β-glucosidases. Febs Letters
Volkers G, Worrall LJ, Kwan DH, et al. (2015) Structure of human ST8SiaIII sialyltransferase provides insight into cell-surface polysialylation. Nature Structural & Molecular Biology. 22: 627-35
Kwan DH, Ernst S, Kötzler MP, et al. (2015) Chemoenzymatic Synthesis of a Type 2 Blood Group A Tetrasaccharide and Development of High-throughput Assays Enables a Platform for Screening Blood Group Antigen-cleaving Enzymes. Glycobiology. 25: 806-11
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