The browser you are using is not supported by this website. All versions of Internet Explorer are no longer supported, either by us or Microsoft (read more here: https://www.microsoft.com/en-us/microsoft-365/windows/end-of-ie-support).

Please use a modern browser to fully experience our website, such as the newest versions of Edge, Chrome, Firefox or Safari etc.

Default user image.

Gunnar Karlström

Professor emeritus

Default user image.

Temperature-induced phase partitioning of peptides in water solutions of ethylene oxide and propylene oxide random copolymers

Author

  • Hans-Olof Johansson
  • Gunnar Karlström
  • Folke Tjerneld

Summary, in English

A thermoseparating random copolymer (Ucon 50-HB-5100) composed of (50%) ethylene oxide and (50%) propylene oxide has been used to form an aqueous two-phase system by heating the polymer-water solution above the cloud point of the copolymer. In the formed two-phase system a water rich top phase is in equilibrium with an aqueous polymer rich bottom phase. The partitioning of amino acids and peptides in this aqueous two-phase system has been studied. Hydrophobic peptides (containing aromatic amino acids) were strongly partitioned to the polymer rich phase, while hydrophilic peptides were enriched in the water rich phase. The effect of temperature on the partitioning was investigated and a decreased partitioning to the polymer rich phase was obtained upon temperature increase. The effect of two salts (NaClO4 and Na2SO4) on the partitioning of a positively charged polypeptide, poly(Lys, Trp), was very strong. With NaClO4 the polypeptide was quantitatively partitioned to the polymer rich phase while with Na2SO4 the polypeptide was partitioned to the water rich phase. Model calculations based on a modified Flory-Huggins theory have been performed to better understand the experimental behavior.

Department/s

  • Biochemistry and Structural Biology
  • Computational Chemistry

Publishing year

1997

Language

English

Pages

315-325

Publication/Series

Biochimica et Biophysica Acta. General Subjects

Volume

1335

Issue

3

Document type

Article

Publisher

Elsevier

Topic

  • Theoretical Chemistry (including Computational Chemistry)
  • Biological Sciences

Keywords

  • Polymer
  • Phase separation
  • Peptide
  • Aqueous two-phase system
  • Temperature-induced phase separation

Status

Published

ISBN/ISSN/Other

  • ISSN: 0304-4165