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B W Sigurskjold

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Analytical Biochemistry|January 8, 2000
Exact analysis of competition ligand binding by displacement isothermal titration calorimetryB W Sigurskjold
European Journal of Biochemistry|January 2, 1989
Mechanism and binding specificity of beta-glucosidase-catalyzed hydrolysis of cellobiose analogues studied by competition enzyme kinetics monitored by 1H-NMR spectroscopyK Bock, B W Sigurskjold
The Journal of Biological Chemistry|April 25, 1992
Thermodynamics of oligosaccharide binding to a monoclonal antibody specific for a Salmonella O-antigen point to hydrophobic interactions in the binding siteB W Sigurskjold, D R Bundle
Methods in Enzymology|January 1, 1994
Determination of accurate thermodynamics of binding by titration microcalorimetryD R Bundle, B W Sigurskjold
Biochemistry|August 23, 1994
Thermodynamics of inhibitor binding to the catalytic site of glucoamylase from Aspergillus niger determined by displacement titration calorimetryB W Sigurskjold, C R Berland, B Svensson
Biochemistry|May 13, 1999
Thermodynamics of reversible and irreversible unfolding and domain interactions of glucoamylase from Aspergillus niger studied by differential scanning and isothermal titration calorimetryT Christensen, B Svensson, B W Sigurskjold
Acta Chemica Scandinavica (Copenhagen, Denmark : 1989)|November 1, 1991
Hydrolysis of substrate analogues catalysed by beta-D-glucosidase from Aspergillus niger. Part II: Deoxy and deoxyhalo derivatives of cellobioseB W Sigurskjold, B Duus, K Bock
European Journal of Biochemistry|April 10, 1991
Sensitive titration microcalorimetric study of the binding of Salmonella O-antigenic oligosaccharides by a monoclonal antibodyB W Sigurskjold, E Altman, D R Bundle
European Journal of Biochemistry|October 1, 1994
Thermodynamics of ligand binding to the starch-binding domain of glucoamylase from Aspergillus nigerB W Sigurskjold, B Svensson, G Williamson, et al.
Biochemistry|June 20, 2000
Tetranectin-binding site on plasminogen kringle 4 involves the lysine-binding pocket and at least one additional amino acid residueJ H Graversen, B W Sigurskjold, H C Thøgersen, et al.
Pageof 3

Showing results (1-10 of 22) with videos related to

Sort By:
Pageof 3
Analytical Biochemistry|January 8, 2000
Exact analysis of competition ligand binding by displacement isothermal titration calorimetryB W Sigurskjold
European Journal of Biochemistry|January 2, 1989
Mechanism and binding specificity of beta-glucosidase-catalyzed hydrolysis of cellobiose analogues studied by competition enzyme kinetics monitored by 1H-NMR spectroscopyK Bock, B W Sigurskjold
The Journal of Biological Chemistry|April 25, 1992
Thermodynamics of oligosaccharide binding to a monoclonal antibody specific for a Salmonella O-antigen point to hydrophobic interactions in the binding siteB W Sigurskjold, D R Bundle
Methods in Enzymology|January 1, 1994
Determination of accurate thermodynamics of binding by titration microcalorimetryD R Bundle, B W Sigurskjold
Biochemistry|August 23, 1994
Thermodynamics of inhibitor binding to the catalytic site of glucoamylase from Aspergillus niger determined by displacement titration calorimetryB W Sigurskjold, C R Berland, B Svensson
Biochemistry|May 13, 1999
Thermodynamics of reversible and irreversible unfolding and domain interactions of glucoamylase from Aspergillus niger studied by differential scanning and isothermal titration calorimetryT Christensen, B Svensson, B W Sigurskjold
Acta Chemica Scandinavica (Copenhagen, Denmark : 1989)|November 1, 1991
Hydrolysis of substrate analogues catalysed by beta-D-glucosidase from Aspergillus niger. Part II: Deoxy and deoxyhalo derivatives of cellobioseB W Sigurskjold, B Duus, K Bock
European Journal of Biochemistry|April 10, 1991
Sensitive titration microcalorimetric study of the binding of Salmonella O-antigenic oligosaccharides by a monoclonal antibodyB W Sigurskjold, E Altman, D R Bundle
European Journal of Biochemistry|October 1, 1994
Thermodynamics of ligand binding to the starch-binding domain of glucoamylase from Aspergillus nigerB W Sigurskjold, B Svensson, G Williamson, et al.
Biochemistry|June 20, 2000
Tetranectin-binding site on plasminogen kringle 4 involves the lysine-binding pocket and at least one additional amino acid residueJ H Graversen, B W Sigurskjold, H C Thøgersen, et al.
Pageof 3