R. Anthony J Warren

Affiliations: 
University of British Columbia, Vancouver, Vancouver, BC, Canada 
Area:
Microbiology Biology
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"Richard Anthony John Warren" OR "R. Anthony J. Warren"
Bio:

https://books.google.com/books?id=3pZLAQAAMAAJ

Parents

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John B. Neilands grad student 1964 UC Berkeley (Chemistry Tree)
 (The Bacterial Degradation of Ferrichromes)

Children

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Bradley W. McLean grad student 2001 UBC
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Publications

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Kwan EM, Boraston AB, McLean BW, et al. (2005) N-Glycosidase-carbohydrate-binding module fusion proteins as immobilized enzymes for protein deglycosylation. Protein Engineering, Design & Selection : Peds. 18: 497-501
Boraston AB, Notenboom V, Warren RA, et al. (2003) Structure and ligand binding of carbohydrate-binding module CsCBM6-3 reveals similarities with fucose-specific lectins and "galactose-binding" domains. Journal of Molecular Biology. 327: 659-69
Boraston AB, Kwan E, Chiu P, et al. (2003) Recognition and hydrolysis of noncrystalline cellulose. The Journal of Biological Chemistry. 278: 6120-7
McLean BW, Boraston AB, Brouwer D, et al. (2002) Carbohydrate-binding modules recognize fine substructures of cellulose. The Journal of Biological Chemistry. 277: 50245-54
Schärpf M, Connelly GP, Lee GM, et al. (2002) Site-specific characterization of the association of xylooligosaccharides with the CBM13 lectin-like xylan binding domain from Streptomyces lividans xylanase 10A by NMR spectroscopy. Biochemistry. 41: 4255-63
Boraston AB, McLean BW, Chen G, et al. (2002) Co-operative binding of triplicate carbohydrate-binding modules from a thermophilic xylanase. Molecular Microbiology. 43: 187-94
Boraston AB, Ghaffari M, Warren RA, et al. (2002) Identification and glucan-binding properties of a new carbohydrate-binding module family. The Biochemical Journal. 361: 35-40
Esteghlalian AR, Srivastava V, Gilkes NR, et al. (2001) Do cellulose binding domains increase substrate accessibility? Applied Biochemistry and Biotechnology. 91: 575-92
Boraston AB, Warren RA, Kilburn DG. (2001) beta-1,3-Glucan binding by a thermostable carbohydrate-binding module from Thermotoga maritima. Biochemistry. 40: 14679-85
Boraston AB, Warren RA, Kilburn DG. (2001) Glycosylation by Pichia pastoris decreases the affinity of a family 2a carbohydrate-binding module from Cellulomonas fimi: a functional and mutational analysis. The Biochemical Journal. 358: 423-30
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