4.5 Article

Structure of sphingomyelin bilayers: A simulation study

Journal

BIOPHYSICAL JOURNAL
Volume 85, Issue 6, Pages 3624-3635

Publisher

BIOPHYSICAL SOCIETY
DOI: 10.1016/S0006-3495(03)74780-8

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Funding

  1. NIGMS NIH HHS [GM54651, R01 GM054651] Funding Source: Medline

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We have carried out a molecular dynamics simulation of a hydrated 18: 0 sphingomyelin lipid bilayer. The bilayer contained 1600 sphingomyelin (SM) molecules, and 50,592 water molecules. After construction and initial equilibration, the simulation was run for 3.8 ns at a constant temperature of 50degreesC and a constant pressure of 1 atm. We present properties of the bilayer calculated from the simulation, and compare with experimental data and with properties of dipalmitoyl phosphatidylcholine (DPPC) bilayers. The SM bilayers are significantly more ordered and compact than DPPC bilayers at the same temperature. SM bilayers also exhibit significant intramolecular hydrogen bonding between phosphate ester oxygen and hydroxyl hydrogen atoms. This results in a decreased hydration in the polar region of the SM bilayer compared with DPPC. Since our simulation system is very large we have calculated the power spectrum of bilayer undulation and peristaltic modes, and we compare these data with similar calculations for DPPC bilayers. We find that the SM bilayer has significantly larger bending modulus and area compressibility compared to DPPC.

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