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Perfluorophenyl azide immobilization chemistry for single molecule force spectroscopy of the concanavalin A/mannose interaction
Authors:Madwar Carolin  Kwan William Chu  Deng Lingquan  Ramström Olof  Schmidt Rolf  Zou Shan  Cuccia Louis A
Institution:Department of Chemistry & Biochemistry, Concordia University, 7141 Sherbrooke Street West, Montre?al, Que?bec, Canada H4B 1R6.
Abstract:The versatility of perfluorophenyl azide (PFPA) derivatives makes them useful for attaching a wide variety of biomolecules and polymers to surfaces. Herein, a single molecule force spectroscopy (SMFS) study of the concanavalin A/mannose interaction was carried out using PFPA immobilization chemistry. SMFS of the concanavalin A/mannose interaction yielded an average unbinding force of 70-80 pN for loading rates between 8000 and 40,000 pN/s for mannose surfaces on aminated glass, and an unbinding force of 57 ± 20 pN at 6960 pN/s for mannose surfaces on gold-coated glass. Dynamic force spectroscopy was used to determine the dissociation rate constant, k(off), for this interaction to be 0.16 s(-1).
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