Cellular incorporation and localization of fluorescent derivatives of gangliosides, cerebroside and sphingomyelin
- 9 April 1991
- journal article
- Published by Wiley in FEBS Letters
- Vol. 281 (1-2) , 39-42
- https://doi.org/10.1016/0014-5793(91)80353-5
Abstract
Fluorescent dansyl derivatives of 3 natural sphingolipids (gangliosides, cerebroside und sphingomyelin) were shown to be readily taken up by culture cells (HeLa‐, MDCK‐ and primary rat brain cells). A part of the incorporated fluorescent sphingolipids remained associated with the cells after incubation in a culture medium containing serum, showing a cellular integration of these lipids. Microscopical studies indicated a localization of incorporated lipids in distinct subcellular regions; whereas dansyl cerebroside densely stained structures suggestive of the cytoskeleton and the actin filament, dansyl sphingomyelin and dansyl gangliosides were primarily associated with the plasma membrane. The findings are consistent with the current views on the arrangement of sphingolipids in animal cells.Keywords
This publication has 19 references indexed in Scilit:
- Lipid polymorphism and the functional roles of lipids in biological membranesPublished by Elsevier ,2002
- Synthesis of lysogangliosidesBiochemistry, 1985
- Dansylsphingolipids for labelling and probing membranesFEBS Letters, 1982
- Role of membrane gangliosides in the binding and action of bacterial toxinsThe Journal of Membrane Biology, 1982
- Specific gangliosides function as host cell receptors for Sendai virus.Proceedings of the National Academy of Sciences, 1981
- Cell adhesion mediated by glycolipidsNature, 1978
- Glycolipids of chick embryo fibroblasts infected with temperature-sensitive mutants of avian sarcoma virusesVirology, 1977
- Tubulin-specific antibody and the expression of microtubules in 3T3 cells after attachment to a substratumExperimental Cell Research, 1976
- Labeling of Animal Cells with Fluorescent Dansyl CerebrosideZeitschrift für Naturforschung C, 1976
- Choline Acetyltransferase Activity Is Increased in Combined Cultures of Spinal Cord and Muscle Cells from MiceScience, 1973