Abstract
A detailed model for the structure and dynamics of the interior of the lipid bilayer in the liquid crystal phase is presented. The model includes two classes of motion: (i) the internal dynamics of the chains, determined from Brownian dynamics simulations with a continuous version of the Marcelja mean-field potential, and (ii) noncollective reorientation (axial rotation and wobble) of the entire molecule, introduced by a cone model. The basic unit of the model is a single lipid chain with field parameters adjusted to fit the 2H order parameters and the frequency-dependent 13C NMR T1 relaxation times of dipalmitoyl phosphatidylcholine bilayers. The chain configurations obtained from the trajectory are used to construct a representation of the bilayer. The resulting lipid assembly is consistent with NMR, neutron diffraction, surface area, and density data. It indicates that a high degree of chain disorder and entanglement exists in biological membranes.
MeSH Terms
1,2-Dipalmitoylphosphatidylcholine/chemistry
Deuterium
Lipid Bilayers
Magnetic Resonance Spectroscopy
Models, Molecular
Molecular Conformation
Thermodynamics
Chemicals
Lipid Bilayers
1,2-Dipalmitoylphosphatidylcholine
Deuterium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Pastor R W
Center for Biologics Evaluation and Research, Food and Drug Administration, Bethesda, MD 20892.
Venable R M
Karplus M
References (15)
15 references, click to expand
-
Structure of oriented lipid bilayers.
Nat New Biol. 1971 Mar 17;230(11):69-72
PMID: 5279040
-
Anisotropic 2H NMR spin-lattice relaxation in L alpha-phase cerebroside bilayers.
Biochemistry. 1989 Dec 12;28(25):9569-74
PMID: 2611249
-
Chain ordering in liquid crystals. II. Structure of bilayer membranes.
Biochim Biophys Acta. 1974 Oct 29;367(2):165-76
PMID: 4371833
-
More on the motional state of lipid bilayer membranes: interpretation of order parameters obtained from nuclear magnetic resonance experiments.
Biochemistry. 1977 Jun 14;16(12):2657-67
PMID: 889782
-
Lecithin bilayers. Density measurement and molecular interactions.
Biophys J. 1978 Aug;23(2):159-75
PMID: 687759
-
Neutron diffraction studies on phosphatidylcholine model membranes. II. Chain conformation and segmental disorder.
J Mol Biol. 1979 Nov 15;134(4):693-706
PMID: 537075
-
Effect of librational motion on fluorescence depolarization and nuclear magnetic resonance relaxation in macromolecules and membranes.
Biophys J. 1980 Jun;30(3):489-506
PMID: 7260284
-
The description of membrane lipid conformation, order and dynamics by 2H-NMR.
Biochim Biophys Acta. 1983 Mar 21;737(1):117-71
PMID: 6337629
-
Lipid bilayer thickness varies linearly with acyl chain length in fluid phosphatidylcholine vesicles.
J Mol Biol. 1983 May 15;166(2):211-7
PMID: 6854644
-
New view of lipid bilayer dynamics from 2H and 13C NMR relaxation time measurements.
Proc Natl Acad Sci U S A. 1983 Jul;80(14):4325-9
PMID: 6576340
-
Mimicry and mechanism in phospholipid models of membrane fusion.
Annu Rev Physiol. 1986;48:201-12
PMID: 3518615
-
Molecular mechanisms of protein secretion: the role of the signal sequence.
Adv Protein Chem. 1986;38:109-80
PMID: 3541538
-
Chain molecules at high densities at interfaces.
Annu Rev Phys Chem. 1988;39:425-61
PMID: 3075466
-
Lipid chains and cholesterol in model membranes: a Monte Carlo Study.
Biochemistry. 1989 May 2;28(9):3687-91
PMID: 2751989
-
The dynamic structure of fatty acyl chains in a phospholipid bilayer measured by deuterium magnetic resonance.
Biochemistry. 1974 Nov 5;13(23):4839-45
PMID: 4371820