Extension of the iSoLF implicit-solvent coarse-grained model for multicomponent lipid bilayers

Author:

Ugarte La Torre Diego1ORCID,Takada Shoji2ORCID,Sugita Yuji134ORCID

Affiliation:

1. Computational Biophysics Research Team, RIKEN Center for Computational Science 1 , Kobe, Hyogo, Japan

2. Department of Biophysics, Graduate School of Science, Kyoto University 2 , Kyoto, Japan

3. Theoretical Molecular Science Laboratory, RIKEN Cluster for Pioneering Research 3 , Wako, Saitama, Japan

4. Laboratory for Biomolecular Function Simulation, RIKEN Center for Biosystems Dynamics Research 4 , Kobe, Hyogo, Japan

Abstract

iSoLF is a coarse-grained (CG) model for lipid molecules with the implicit-solvent approximation used in molecular dynamics (MD) simulations of biological membranes. Using the original iSoLF (iSoLFv1), MD simulations of lipid bilayers consisting of either POPC or DPPC and these bilayers, including membrane proteins, can be performed. Here, we improve the original model, explicitly treating the electrostatic interactions between different lipid molecules and adding CG particle types. As a result, the available lipid types increase to 30. To parameterize the potential functions of the new model, we performed all-atom MD simulations of each lipid at three different temperatures using the CHARMM36 force field and the modified TIP3P model. Then, we parameterized both the bonded and non-bonded interactions to fit the area per lipid and the membrane thickness of each lipid bilayer by using the multistate Boltzmann Inversion method. The final model reproduces the area per lipid and the membrane thickness of each lipid bilayer at the three temperatures. We also examined the applicability of the new model, iSoLFv2, to simulate the phase behaviors of mixtures of DOPC and DPPC at different concentrations. The simulation results with iSoLFv2 are consistent with those using Dry Martini and Martini 3, although iSoLFv2 requires much fewer computations. iSoLFv2 has been implemented in the GENESIS MD software and is publicly available.

Funder

Japan Society for the Promotion of Science

RIKEN

Publisher

AIP Publishing

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

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