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PMID: 12833542 Published · ppublish English Evaluation Study Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Effective energy function for proteins in lipid membranes.

Proteins ·Vol. 52 ·No. 2 ·2003-08-01 ·Pages 176-92

Lazaridis T

Abstract

A simple extension of the EEF1 energy function to heterogeneous membrane-aqueous media is proposed. The extension consists of (a) development of solvation parameters for a nonpolar phase using experimental data for the transfer of amino acid side-chains from water to cyclohexane, (b) introduction of a heterogeneous membrane-aqueous system by making the reference solvation free energy of each atom dependent on the vertical coordinate, (c) a modification of the distance-dependent dielectric model to account for reduced screening of electrostatic interactions in the membrane, and (d) an adjustment of the EEF1 aqueous model in light of recent calculations of the potential of mean force between amino acid side-chains in water. The electrostatic model is adjusted to match experimental observations for polyalanine, polyleucine, and the glycophorin A dimer. The resulting energy function (IMM1) reproduces the preference of Trp and Tyr for the membrane interface, gives reasonable energies of insertion into or adsorption onto a membrane, and allows stable 1-ns MD simulations of the glycophorin A dimer. We find that the lowest-energy orientation of melittin in bilayers varies, depending on the thickness of the hydrocarbon layer.

MeSH Terms
Amino Acids/chemistry Bacteriorhodopsins/chemistry Computational Biology/methods Computer Simulation Glycophorins/chemistry Lipid Bilayers/chemistry Melitten/chemistry Membrane Proteins/chemistry Models, Molecular Peptides/chemistry Protein Folding Protein Structure, Secondary Solvents/chemistry Static Electricity Tryptophan/chemistry Tyrosine/chemistry
Chemicals
Amino Acids Glycophorins Lipid Bilayers Membrane Proteins Peptides Solvents peptide 18A Melitten polyalanine polyleucine Tyrosine Bacteriorhodopsins Tryptophan
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Lazaridis Themis
Department of Chemistry, City College of the City University of New York, New York 10031, USA. themis@sci.ccny.cuny.edu
Article Info
Journal
Proteins
Abbr.
Proteins
ISSN
1097-0134
Published
2003-08-01
Pages
176-92
Language
English
Region
United States
NLM ID
8700181
Subset
IM
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