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Electrostatics of solvent and membrane interfaces and the role of electronic polarizability

journal contribution
posted on 2024-11-01, 09:47 authored by Igor Vorobyov, Toby AllenToby Allen
The electrostatics of solvent and lipid bilayer interfaces are investigated with the aim of understanding the interaction of ions and charged peptides with biological membranes. We overcome the lacking dielectric response of hydrocarbon by carrying out atomistic molecular dynamics simulations using a polarizable model. For air-solvent or solvent-solvent interfaces, the effect of polarizability itself is small, yet changes in the fixed atomic charge distribution are responsible for substantial changes in the potential. However, when electrostatics is probed by finite solutes, a cancellation of dominant quadrupolar terms from the macroscopic and microscopic (solute-solvent) interfaces eliminates this dependence and leads to small net contributions to partitioning thermodynamics. In contrast, the membrane dipole potential exhibits considerable dependence on lipid electronic polarizability, due to its dominant dipolar contribution. We report the dipole potential for a polarizable lipid hydrocarbon membrane model of 480-610 mV, in better accord with experimental measurements.

History

Journal

The Journal of Chemical Physics

Volume

132

Number

185101

Issue

18

Start page

1

End page

13

Total pages

13

Publisher

American Institute of Physics

Place published

United States

Language

English

Copyright

© 2010 American Institute of Physics

Former Identifier

2006029041

Esploro creation date

2020-06-22

Fedora creation date

2012-07-09

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