Fluorescence-quenching and resonance energy transfer studies of lipid microdomains in model and biological membranes (Review)
- 1 January 2006
- journal article
- review article
- Published by Taylor & Francis in Molecular Membrane Biology
- Vol. 23 (1) , 5-16
- https://doi.org/10.1080/09687860500473002
Abstract
Measurements of contact-dependent fluorescence quenching and of fluorescence resonance energy transfer (FRET) within bilayers provide information concerning the spatial relationships between molecules on distance scales of a few nm or up a few tens of nm, respectively, and are therefore well suited to detect the presence and composition of membrane microdomains. As described in this review, techniques based on fluorescence quenching and FRET have been used to demonstrate the formation of nanoscale liquid-ordered domains in cholesterol-containing model membranes under physiological conditions, and to investigate the structural features of lipids and proteins that influence their partitioning between liquid-ordered and liquid-disordered domains. FRET-based methods have also been used to test for the presence of 'raft' microdomains in the plasma membranes of mammalian cells. We discuss the sometimes divergent findings of these studies, possible modifications to the 'raft hypothesis' suggested by studies using FRET and other techniques, and the further potential of FRET-based methods to test and to refine current models of the nature and organization of membrane microdomains.Keywords
This publication has 67 references indexed in Scilit:
- Lipid Rafts have Different Sizes Depending on Membrane Composition: A Time-resolved Fluorescence Resonance Energy Transfer StudyJournal of Molecular Biology, 2004
- Ceramide Selectively Displaces Cholesterol from Ordered Lipid Domains (Rafts)Journal of Biological Chemistry, 2004
- Lipid RaftsCell, 2003
- Sphingomyelin/Phosphatidylcholine/Cholesterol Phase Diagram: Boundaries and Composition of Lipid RaftsBiophysical Journal, 2003
- Exclusion of a Transmembrane-Type Peptide from Ordered-Lipid Domains (Rafts) Detected by Fluorescence Quenching: Extension of Quenching Analysis to Account for the Effects of Domain Size and Domain BoundariesBiochemistry, 2003
- T cell receptor ligation induces the formation of dynamically regulated signaling assembliesThe Journal of cell biology, 2002
- Partitioning of Lipid-Modified Monomeric GFPs into Membrane Microdomains of Live CellsScience, 2002
- Effect of the Structure of Natural Sterols and Sphingolipids on the Formation of Ordered Sphingolipid/Sterol Domains (Rafts)Journal of Biological Chemistry, 2001
- On the Origin of Sphingolipid/Cholesterol-Rich Detergent-Insoluble Cell Membranes: Physiological Concentrations of Cholesterol and Sphingolipid Induce Formation of a Detergent-Insoluble, Liquid-Ordered Lipid Phase in Model MembranesBiochemistry, 1997
- Calcium-induced lipid phase separations and interactions of phosphatidylcholine/anionic phospholipid vesicles. Fluorescence studies using carbazole-labeled and brominated phospholipidsBiochemistry, 1990