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The MARTINI Force Field:  Coarse Grained Model for Biomolecular Simulations

The Journal of Physical Chemistry B · 2007 · Vol. 111(27) · pp. 7812–7824
‪Siewert J. MarrinkHerre Jelger RisseladaS. YefimovD. Peter TielemanAlex H. de Vries

Abstract

We present an improved and extended version of our coarse grained lipid model. The new version, coined the MARTINI force field, is parametrized in a systematic way, based on the reproduction of partitioning free energies between polar and apolar phases of a large number of chemical compounds. To reproduce the free energies of these chemical building blocks, the number of possible interaction levels of the coarse-grained sites has increased compared to those of the previous model. Application of the new model to lipid bilayers shows an improved behavior in terms of the stress profile across the bilayer and the tendency to form pores. An extension of the force field now also allows the simulation of planar (ring) compounds, including sterols. Application to a bilayer/cholesterol system at various concentrations shows the typical cholesterol condensation effect similar to that observed in all atom representations.

Lipid Membrane Structure and BehaviorProtein Structure and DynamicsSpectroscopy and Quantum Chemical StudiesForce field (fiction)BilayerChemical physicsPolarLipid bilayerCondensationMolecular dynamicsField (mathematics)Ring (chemistry)Planar

MeSH terms

AlgorithmsBenzeneChemistry, PhysicalCholesterolComputer SimulationCyclohexanesFreezingLipid BilayersMembranes, ArtificialModels, ChemicalSolventsSurface TensionThermodynamics1,2-DipalmitoylphosphatidylcholineChemical Phenomena

Funding

  • Alberta Heritage Foundation for Medical Research
  • Nederlandse Organisatie voor Wetenschappelijk Onderzoek
  • Canadian Institutes of Health Research
  • Natural Sciences and Engineering Research Council of Canada
Citations
5,653
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References
67
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100%
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References
Coarse Grained Model for Semiquantitative Lipid Simulations
The Journal of Physical Chemistry B · 2003 · 2,264 citations
GROMACS: Fast, flexible, and free
Journal of Computational Chemistry · 2005 · 18,562 citations
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