4.6 Article

Micrometric segregation of fluorescent membrane lipids: relevance for endogenous lipids and biogenesis in erythrocytes

期刊

JOURNAL OF LIPID RESEARCH
卷 54, 期 4, 页码 1066-1076

出版社

ELSEVIER
DOI: 10.1194/jlr.M034314

关键词

lipid domains; plasma membrane; compartmentation; confocal imaging; cholesterol; membrane tension; spherocytosis; membrane:spectrin anchorage complexes

资金

  1. Universite catholique de Louvain (Belgium)
  2. Fonds de la Recherche Scientifique/Fonds National de la Recherche Scientifique (F.R.S./FNRS) (Belgium)
  3. Region Wallonne (Belgium)
  4. Region Bruxelloise (Belgium)
  5. Loterie Nationale (Belgium)
  6. IUAP (Belgium)
  7. Salus Sanguinis Foundation (Belgium)

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Micrometric membrane lipid segregation is controversial. We addressed this issue in attached erythrocytes and found that fluorescent boron dipyrromethene (BODIPY) analogs of glycosphingolipids (GSLs) [glucosylceramide (BODIPY-GlcCer) and monosialotetrahexosylganglioside (GM1BODIPY)], sphingomyelin (BODIPY-SM), and phosphatidylcholine (BODIPY-PC inserted into the plasma membrane spontaneously gathered into distinct submicrometric domains. GM1BODIPY domains colocalized with endogenous GM1 labeled by cholera toxin. All BODIPY-lipid domains disappeared upon erythrocyte stretching, indicating control by membrane tension. Minor cholesterol depletion suppressed BODIPY-SM and BODIPY-PC but preserved BODIPY-GlcCer domains. Each type of domain exchanged constituents but assumed fixed positions, suggesting self-clustering and anchorage to spectrin. Domains showed differential association with 4.1R versus ankyrin complexes upon antibody patching. BODIPY-lipid domains also responded differentially to uncoupling at 4.1R complexes [protein kinase C (PKC) activation] and ankyrin complexes (in spherocytosis, a membrane fragility disease). These data point to micrometric compartmentation of polar BODIPY-lipids modulated by membrane tension, cholesterol, and differential association to the two nonredundant membrane: spectrin anchorage complexes. Micrometric compartmentation might play a role in erythrocyte membrane deformability and fragility.-D'Auria, L., M. Fenaux, P. Aleksandrowicz, P. Van Der Smissen, C. Chantrain, C. Vermylen, M. Vikkula, P. J. Courtoy, and D. Tyteca. Micrometric segregation of fluorescent membrane lipids: relevance for endogenous lipids and biogenesis in erythrocytes. J. Lipid Res. 2013. 54: 1066-1076.

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