Literature DB >> 26593649

Modeling the Self-Assembly and Stability of DHPC Micelles Using Atomic Resolution and Coarse Grained MD Simulations.

Johan F Kraft1, Mikkel Vestergaard1, Birgit Schiøtt1, Lea Thøgersen2.   

Abstract

Membrane mimics such as micelles and bicelles are widely used in experiments involving membrane proteins. With the aim of being able to carry out molecular dynamics simulations in environments comparable to experimental conditions, we set out to test the ability of both coarse grained and atomistic resolution force fields to model the experimentally observed behavior of the lipid 1,2-dihexanoyl-sn-glycero-3-phosphocholine (DHPC), which is a widely used lipid for biophysical characterization of membrane proteins. It becomes clear from our results that a satisfactory modeling of DHPC aggregates in solution poses different demands to the force field than do the modeling of bilayers. First, the representation of the short tailed lipid DHPC in the coarse grained force field MARTINI is assessed with the intend of successfully self-assemble micelles with structural characteristics comparable to experimental data. Then, the use of the recently presented polarizable water model in MARTINI is shown to be essential for producing micelles that are structurally in accordance with experiments. For the atomistic representations of DHPC micelles in solution the GROMOS96 force field with lipid parameters by A. Kukol fails to maintain stable micelles, whereas the most recent CHARMM36 lipid parameters and GROMOS96 with the so-called Berger lipid parameters both succeed in this regard.

Entities:  

Year:  2012        PMID: 26593649     DOI: 10.1021/ct200921u

Source DB:  PubMed          Journal:  J Chem Theory Comput        ISSN: 1549-9618            Impact factor:   6.006


  3 in total

1.  The Fluidity of Phosphocholine and Maltoside Micelles and the Effect of CHAPS.

Authors:  Marissa Kieber; Tomihiro Ono; Ryan C Oliver; Sarah B Nyenhuis; D Peter Tieleman; Linda Columbus
Journal:  Biophys J       Date:  2019-03-30       Impact factor: 4.033

2.  Multiscale molecular dynamics simulations of sodium dodecyl sulfate micelles: from coarse-grained to all-atom resolution.

Authors:  Guillaume Roussel; Catherine Michaux; Eric A Perpète
Journal:  J Mol Model       Date:  2014-10-10       Impact factor: 1.810

3.  Interactions of lipids and detergents with a viral ion channel protein: molecular dynamics simulation studies.

Authors:  Sarah L Rouse; Mark S P Sansom
Journal:  J Phys Chem B       Date:  2014-10-21       Impact factor: 3.466

  3 in total

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