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Photo Jan Forsman

Jan Forsman

Professor

Photo Jan Forsman

Anomalous Protein-Protein Interactions in Multivalent Salt Solution

Author

  • Coralie Pasquier
  • Mario Vazdar
  • Jan Forsman
  • Pavel Jungwirth
  • Mikael Lund

Summary, in English

The stability of aqueous protein solutions is strongly affected by multivalent ions, which induce ion-ion correlations beyond the scope of classical mean-field theory. Using all-atom molecular dynamics (MD) and coarse grained Monte Carlo (MC) simulations, we investigate the interaction between a pair of protein molecules in 3:1 electrolyte solution. In agreement with available experimental findings of "reentrant protein condensation", we observe an anomalous trend in the protein-protein potential of mean force with increasing electrolyte concentration in the order: (i) double-layer repulsion, (ii) ion-ion correlation attraction, (iii) overcharge repulsion, and in excess of 1:1 salt, (iv) non Coulombic attraction. To efficiently sample configurational space we explore hybrid continuum solvent models, applicable to many-protein systems, where weakly coupled ions are treated implicitly, while strongly coupled ones are treated explicitly. Good agreement is found with the primitive model of electrolytes, as well as with atomic models of protein and solvent.

Department/s

  • Computational Chemistry

Publishing year

2017-04-13

Language

English

Pages

3000-3006

Publication/Series

Journal of Physical Chemistry B

Volume

121

Issue

14

Document type

Journal article

Publisher

The American Chemical Society (ACS)

Topic

  • Physical Chemistry (including Surface- and Colloid Chemistry)

Status

Published

ISBN/ISSN/Other

  • ISSN: 1520-6106