• DocumentCode
    1196629
  • Title

    Self-association behaviour of protein:surfactant systems in alcohol/water mixtures

  • Author

    Ruiz-Peña, M. ; Comas-Rojas, H. ; Rodriguez-Calvo, S. ; Pérez-Gramatges, A.

  • Author_Institution
    Dept. of Radiochem., Inst. of Appl. Sci. & Technol., Ciudad De La Habana, Cuba
  • Volume
    152
  • Issue
    5
  • fYear
    2005
  • Firstpage
    177
  • Lastpage
    181
  • Abstract
    The effect of the addition of short-chain monohydric alcohols (ethanol and propan-2-ol) to the protein:surfactant system lysozyme:sodium dodecyl sulfate (Lz:SDS) in aqueous solution was investigated using a conductometric technique. A second protein:surfactant system, bovine serum albumin:SDS (BSA:SDS) was also investigated so that the effect of a different protein conformation and composition could be compared. The critical aggregation concentration (CAC) of the protein forming the complex and the critical micelle concentration (CMC*) of SDS in the presence of protein, at different alcohol concentrations, were determined. It was found in both cases that the addition of alcohol does not produce a significant change in the CAC, whereas the CMC* displays variation with alcohol concentration that shows an inversion in the ranges 0.05-0.06 ethanol mole fraction and 0.02-0.03 propan-2-ol mole fraction. This suggests that, in contrast with the CAC behaviour, the major factor that drives SDS micellisation in the presence of protein is the variation in water structure. Results also suggest that it occurs in the same way for both proteins, where electrostatic interactions are the main force in the formation of the complex. Conversely, hydrophobic interactions play the dominant role at the micellisation stage, and only the extent of the interaction between protein:surfactant aggregates and surfactant species seems to depend on protein nature.
  • Keywords
    aggregation; colloids; enzymes; molecular biophysics; molecular configurations; surfactants; alcohol/water mixtures; bovine serum albumin; conductometric technique; critical aggregation concentration; critical micelle concentration; electrostatic interactions; ethanol; hydrophobic interactions; lysozyme; propan-2-ol; protein composition; protein conformation; protein:surfactant systems; self-association; short-chain monohydric alcohols; sodium dodecyl sulfate; water structure;
  • fLanguage
    English
  • Journal_Title
    Nanobiotechnology, IEE Proceedings -
  • Publisher
    iet
  • ISSN
    1478-1581
  • Type

    jour

  • DOI
    10.1049/ip-nbt:20050006
  • Filename
    1520841