Issue 12, 2014

Membrane curvature based lipid sorting using a nanoparticle patterned substrate

Abstract

Cellular membranes contain a variety of shapes that likely act as motifs for sorting lipids and proteins. To understand the sorting that takes place within cells, a continuous, fluid bilayer with regions of membrane curvature was designed and characterized using confocal fluorescence and total internal reflection fluorescence microscopy techniques. A supported lipid bilayer was formed over fluorescently labelled nanoparticles deposited on a glass surface. The lipid composition and membrane shape are separately controlled and the nanoparticle dimensions (d = 40–200 nm) determine the extent of curvature. The bulk membrane is fluid as demonstrated by fluorescence recovery after photobleaching (FRAP) using dye labelled lipids. In bilayers that contain fluorescently labelled, single-tailed lipids, accumulation is observed at regions of curvature, yet the molecules retain fluidity. Using single particle imaging methods, lipids are observed to visit regions of curvature and exchange with the surrounding flat membrane. The nanoparticle patterned substrate described here allows for quantitative measurement of the transient interactions between fluorescently labelled biomolecules and regions of membrane curvature.

Graphical abstract: Membrane curvature based lipid sorting using a nanoparticle patterned substrate

Supplementary files

Article information

Article type
Paper
Submitted
26 Sep 2013
Accepted
15 Jan 2014
First published
15 Jan 2014
This article is Open Access
Creative Commons BY-NC license

Soft Matter, 2014,10, 2016-2023

Membrane curvature based lipid sorting using a nanoparticle patterned substrate

J. C. Black, P. P. Cheney, T. Campbell and M. K. Knowles, Soft Matter, 2014, 10, 2016 DOI: 10.1039/C3SM52522H

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