4.3 Article

Glass transition and dynamics in BSA-water mixtures over wide ranges of composition studied by thermal and dielectric techniques

Journal

BIOCHIMICA ET BIOPHYSICA ACTA-PROTEINS AND PROTEOMICS
Volume 1814, Issue 12, Pages 1984-1996

Publisher

ELSEVIER
DOI: 10.1016/j.bbapap.2011.07.014

Keywords

Molecular mobility; Hydrated protein; Glass transition; Uncrystallized water; Dielectric relaxation; Plasticization

Funding

  1. European Union
  2. National Strategic Reference Framework (NSRF)
  3. knowledge society
  4. Spanish Ministry of Science and Innovation [MAT2010-21611-C03-01]
  5. Conselleria de Sanidad (Generalitat Valenciana)
  6. Instituto de Salud Carlos III (Ministry of Science and Innovation)

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Protein-water dynamics in mixtures of water and a globular protein, bovine serum albumin (BSA), was studied over wide ranges of composition, in the form of solutions or hydrated solid pellets, by differential scanning calorimetry (DSC), thermally stimulated depolarization current technique (TSDC) and dielectric relaxation spectroscopy (DRS). Additionally, water equilibrium sorption isotherm (ESI) measurements were performed at room temperature. The crystallization and melting events were studied by DSC and the amount of uncrystallized water was calculated by the enthalpy of melting during heating. The glass transition of the system was detected by DSC for water contents higher than the critical water content corresponding to the formation of the first sorption layer of water molecules directly bound to primary hydration sites, namely 0.073 (grams of water per grams of dry protein), estimated by ESI. A strong plasticization of the T-g was observed by DSC for hydration levels lower than those necessary for crystallization of water during cooling, i.e. lower than about 0.3 (grams of water per grams of hydrated protein) followed by a stabilization of T-g at about -80 degrees C for higher water contents. The alpha relaxation associated with the glass transition was also observed in dielectric measurements. In TSDC a microphase separation could be detected resulting in double T-g for some hydration levels. A dielectric relaxation of small polar groups of the protein plasticized by water, overlapped by relaxations of uncrystallized water molecules, and a separate relaxation of water in the crystallized water phase (bulk ice crystals) were also recorded. (C) 2011 Elsevier B.V. All rights reserved.

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