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Mangiferin binding to serum albumin is non-saturable and induces conformational changes at high concentrations
Authors:PG Freitas  AF Barbosa  LA Saraiva  I Camps  NJF da Silveira  MP Veloso  MH Santos  JM Schneedorf
Institution:1. Biochemistry Laboratory, Institute of Exact Sciences, Federal University of Alfenas, Unifal-MG, R. Gabriel Monteiro da Silva, 700, 37130-000 Alfenas, MG, Brazil;2. Phytochemistry and Medicinal Chemistry Laboratory, Institute of Exact Sciences, Unifal-MG, Brazil;3. Physics Laboratory, Institute of Exact Sciences, Unifal-MG, Brazil;4. Bioinformatics Laboratory, Institute of Exact Sciences, Unifal-MG, Brazil
Abstract:The binding interaction between mangiferin (MGF), which a natural xanthone isolated from mangoes, and bovine serum albumin (BSA) was studied with absorbance and fluorescence spectroscopy, cyclic voltammetry and molecular modeling. The data were analyzed to assess the binding mechanism, effect of pH and ionic strength, conformational changes in the protein and electrical charge transfer involved. The MGF–BSA complex exhibited positive cooperativity with a 1:1 stoichiometry (Kd=0.38 mmol L?1) for the first binding site and a non-saturable binding at high ligand concentrations. Furthermore, the data also suggest an increase in drug bioavailability in the acidic region and relatively low ionic strength values, which are close to physiological levels. The data suggest a specific electrostatic interaction together with hydrophobic effects and H-bonding displayed in MGF binding to the BSA IIA subdomain. Synchronous fluorescence spectra indicate that there are conformational changes in the polypeptide backbone upon ligand binding. Cyclic voltammetry indicates that there is an irreversible charge transfer between MGF and BSA that is modulated by diffusion on the electrode surface, where two electrons are transferred. These results can help the knowledge of the pharmacokinetic activities of natural or chemical xanthone-based drugs.
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