Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
9887155 | Biochimica et Biophysica Acta (BBA) - Molecular Cell Research | 2005 | 14 Pages |
Abstract
Liquid domains in model lipid bilayers are frequently studied as models of raft domains in cell plasma membranes. Micron-scale liquid domains are easily produced in vesicles composed of ternary mixtures of a high melting temperature lipid, a low melting temperature lipid, and cholesterol. Here, we describe the rich phase behavior observed in binary and ternary systems. We then discuss experimental challenges inherent in mapping phase diagrams of even simple lipid systems. For example, miscibility behavior varies with lipid type, lipid ratio, lipid oxidation, and level of impurity. Liquid domains are often circular, but can become noncircular when membranes are near critical points. Finally, we reflect on applications of phase diagrams in model systems to rafts in cell membranes.
Keywords
GUVDPhyPCDPPELαDLPCDOPCPoPCPSMBSMDCPCAFMDPPCFRAPDSCESMCHOLESRnuclear magnetic resonancesphingomyelinegg sphingomyelinMiscibilityFluorescence resonance energy transferFRETNMRPhase diagramElectron spin resonanceRAFTGiant unilamellar vesicleSolid phaseliquid crystalline phaseliquid ordered phasephosphatidylcholinefluorescence recovery after photobleachingLipidLiquid-orderedatomic force microscopyGelDifferential scanning calorimetrycholesterol
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Authors
Sarah L. Veatch, Sarah L. Keller,