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      Seeing the Membrane from Both Sides Now: Lipid Asymmetry and Its Strange Consequences

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      Cold Spring Harbor Perspectives in Biology
      Cold Spring Harbor Laboratory

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          Preparation of Artificial Plasma Membrane Mimicking Vesicles with Lipid Asymmetry

          Lipid asymmetry, the difference in lipid distribution across the lipid bilayer, is one of the most important features of eukaryotic cellular membranes. However, commonly used model membrane vesicles cannot provide control of lipid distribution between inner and outer leaflets. We recently developed methods to prepare asymmetric model membrane vesicles, but facile incorporation of a highly controlled level of cholesterol was not possible. In this study, using hydroxypropyl-α-cyclodextrin based lipid exchange, a simple method was devised to prepare large unilamellar model membrane vesicles that closely resemble mammalian plasma membranes in terms of their lipid composition and asymmetry (sphingomyelin (SM) and/or phosphatidylcholine (PC) outside/phosphatidylethanolamine (PE) and phosphatidylserine (PS) inside), and in which cholesterol content can be readily varied between 0 and 50 mol%. We call these model membranes “artificial plasma membrane mimicking” (“PMm”) vesicles. Asymmetry was confirmed by both chemical labeling and measurement of the amount of externally-exposed anionic lipid. These vesicles should be superior and more realistic model membranes for studies of lipid-lipid and lipid-protein interaction in a lipid environment that resembles that of mammalian plasma membranes.
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            Understanding the diversity of membrane lipid composition

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              The mystery of membrane organization: composition, regulation and roles of lipid rafts

              Lipid rafts are relatively ordered membrane domains that are enriched in cholesterol and saturated lipids, and selectively recruit other lipids and proteins. They are dynamic and heterogeneous in composition and are thus challenging to visualize in vivo. New technologies are providing novel insights into the formation, organization and functions of these membrane domains.
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                Author and article information

                Contributors
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                Journal
                Cold Spring Harbor Perspectives in Biology
                Cold Spring Harb Perspect Biol
                Cold Spring Harbor Laboratory
                1943-0264
                December 01 2023
                December 2023
                December 2023
                August 21 2023
                : 15
                : 12
                : a041393
                Article
                10.1101/cshperspect.a041393
                02ef78a2-6264-4aed-867f-509cc9dd9308
                © 2023
                History

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