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Thermodynamic benchmark study using Biacore technology
Authors:Navratilova Iva  Papalia Giuseppe A  Rich Rebecca L  Bedinger Daniel  Brophy Susan  Condon Brad  Deng Ta  Emerick Anne W  Guan Hann-Wen  Hayden Tanya  Heutmekers Thomas  Hoorelbeke Bart  McCroskey Mark C  Murphy Mary M  Nakagawa Terry  Parmeggiani Fabio  Qin Xiaochun  Rebe Sabina  Tomasevic Nenad  Tsang Tiffany  Waddell M Brett  Zhang Fred Feiyu  Leavitt Stephanie  Myszka David G
Institution:Center for Biomolecular Interaction Analysis, School of Medicine, University of Utah, Salt Lake City, UT 84132, USA.
Abstract:A total of 22 individuals participated in this benchmark study to characterize the thermodynamics of small-molecule inhibitor-enzyme interactions using Biacore instruments. Participants were provided with reagents (the enzyme carbonic anhydrase II, which was immobilized onto the sensor surface, and four sulfonamide-based inhibitors) and were instructed to collect response data from 6 to 36 degrees C. van't Hoff enthalpies and entropies were calculated from the temperature dependence of the binding constants. The equilibrium dissociation and thermodynamic constants determined from the Biacore analysis matched the values determined using isothermal titration calorimetry. These results demonstrate that immobilization of the enzyme onto the sensor surface did not alter the thermodynamics of these interactions. This benchmark study also provides insights into the opportunities and challenges in carrying out thermodynamic studies using optical biosensors.
Keywords:Biosensor  SPR  Protein-protein  Kinetics  Affinity
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