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Spectral Imaging to Measure Heterogeneity in Membrane Lipid Packing
Authors:Dr. Erdinc Sezgin  Dr. Dominic Waithe  Dr. Jorge Bernardino de la Serna  Prof. Christian Eggeling
Affiliation:MRC Human Immunology Unit and Wolfson Imaging Centre Oxford, Weatherall Institute of Molecular Medicine, University of Oxford, Headley Way, Oxford, OX3 9DS (United Kingdom)
Abstract:Physicochemical properties of the plasma membrane have been shown to play an important role in cellular functionality. Among those properties, the molecular order of the lipids, or the lipid packing, is of high importance. Changes in lipid packing are believed to compartmentalize cellular signaling by initiating coalescence and conformational changes of proteins. A common way to infer membrane lipid packing is by using membrane‐embedded polarity‐sensitive dyes, whose emission spectrum is dependent on the molecular order of the immediate membrane environment. Here, we report on an improved determination of such spectral shifts in the emission spectrum of the polarity‐sensitive dyes. This improvement is based on the use of spectral imaging on a scanning confocal fluorescence microscope in combination with an improved analysis, which considers the whole emission spectrum instead of just single wavelength ranges. Using this approach and the polarity‐sensitive dyes C‐Laurdan or Di‐4‐ANEPPDHQ, we were able to image—with high accuracy—minute differences in the lipid packing of model and cellular membranes.
Keywords:C‐laurdan  generalized polarization  lipid packing  membrane rafts  spectral imaging
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