W. Norde et Ce. Giacomelli, BSA structural changes during homomolecular exchange between the adsorbed and the dissolved states, J BIOTECH, 79(3), 2000, pp. 259-268
The secondary structure and the thermostability of bovine serum albumin (BS
A), before adsorption and after homomolecular displacement from silica and
polystyrene particles, are studied. by circular dichroism spectroscopy and
differential scanning calorimetry. The structural perturbations induced by
the hydrophilic silica surface are reversible, i.e. BSA completely regains
the native structure and stability after being exchanged. On the other hand
, the adsorption on, and subsequent desorption from, polystyrene particles
causes irreversible changes in the stability and (secondary) structure of B
SA. The exchanged proteins have a higher denaturation temperature and a low
er enthalpy of denaturation than native BSA. The alpha-helix content is red
uced while the beta-turn fraction is increased in the exchanged molecules.
Both effects are more pronounced when the protein is displaced from less cr
owded sorbent surfaces. The irreversible surface-induced conformational cha
nge may be related to some aggregation of BSA molecules after being exposed
to a hydrophobic surface. (C) 2000 Published by Elsevier Science B.V. All
rights reserved.