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Correlation between hydrogen/deuterium exchange and Amide I band intensity in hemoglobin aqueous solution under static or 50 Hz magnetic field
Authors:Emanuele Calabrò  Salvatore Magazù
Institution:1. Department of Mathematical and Informatics Sciences, Physical Sciences and Earth Sciences of Messina University, Viale Ferdinando Stagno d''Alcontres 31, 98166 Messina, Italy;2. Le Studium, Loire Valley Institute for Advanced Studies, Orléans & Tours, France;3. Centre de Biophysique Moleculaire (CBM)-CNRS, UPR 4301 du CNRS, rue Charles Sadron, 45071 Orléans cedex 2, France;4. Laboratoire Interfaces, Confinement, Matériaux et Nanostructures (ICMN), UMR 7374 CNRS, Université d''Orléans, 1b rue de la Férollerie, CS 40059, 45071 Orléans cedex 2, France;5. Istituto Nazionale di Alta Matematica “F. Severi” – INDAM, Gruppo Nazionale per la Fisica Matematica – GNFM, Italy;6. CISFA (Interuniversity Consortium of Applied Physical Sciences), Italy
Abstract:Samples of hemoglobin in deuterium oxide solution (D2O) and in bidistilled H2O water solution, both at the concentration of 100 mg/ml, were exposed to a static magnetic field at 100 mT; analogous samples were exposed to 50 Hz magnetic field at 1 mT. Fourier Transform Infrared (FTIR) Spectroscopy was used to analyze separately the response of the secondary structure of this protein (diluted in both aqueous solutions) to separated exposure to both magnetic fields. The most relevant result which was observed after exposures was the significant increasing in intensity of the Amide I band, which was already explained in previous studies assuming that proteins α-helix aligned along the direction of the applied magnetic field due to its large dipole moment. In particular, in this study it was shown that hydrogen/deuterium exchange induced a reduction of the increasing of Amide I vibration band. This result can be explained assuming that Amide hydrogens of hemoglobin exchange with solvent deuterium atoms, causing an increase in mass of the protein and a correlated increasing in inertia of the α-helix, reducing significantly the torque effect of the applied magnetic field.
Keywords:Deuterium oxide  Hemoglobin  FTIR spectroscopy  Magnetic field
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