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February 3, 2022Journal of Chemical Theory and Computation349 citationsOpen Access

Lipid21: Complex Lipid Membrane Simulations with AMBER

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CDCallum J. DicksonRWRoss C. WalkerIGIan R. Gould

Key Points

  • This research aims to enhance lipid simulations by incorporating various lipid types and refining force field parameters.
  • Expanded AMBER lipid force field to include anionic lipids, PUFA, and sphingomyelin.
  • Revised head group torsion and hydrocarbon chain parameters.
  • Conducted extensive 0.9 μs validation runs for each lipid type.
  • Simulation shows improvement in agreement with NMR parameters.
  • Updated parameters yield better phase transition temperature matches.
  • Demonstrates the effect of PUFA concentrations on cholesterol in raft-like bilayers.

Abstract

We extend the modular AMBER lipid force field to include anionic lipids, polyunsaturated fatty acid (PUFA) lipids, and sphingomyelin, allowing the simulation of realistic cell membrane lipid compositions, including raft-like domains. Head group torsion parameters are revised, resulting in improved agreement with NMR order parameters, and hydrocarbon chain parameters are updated, providing a better match with phase transition temperature. Extensive validation runs (0.9 μs per lipid type) show good agreement with experimental measurements. Furthermore, the simulation of raft-like bilayers demonstrates the perturbing effect of increasing PUFA concentrations on cholesterol molecules. The force field derivation is consistent with the AMBER philosophy, meaning it can be easily mixed with protein, small molecule, nucleic acid, and carbohydrate force fields.

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Cite This Study

Dickson et al. (2022) studied this question.

synapsesocial.com/papers/69daa34c3bc1ef7225684478https://doi.org/10.1021/acs.jctc.1c01217
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