Long chain‐polyunsaturated fatty acids modulate membrane phospholipid composition and protein localization in lipid rafts of neural stem cell cultures |
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Authors: | Bénédicte Langelier Alain Linard Christian Bordat Monique Lavialle Christine Heberden |
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Affiliation: | INRA‐Laboratoire de Nutrition et Régulations Lipidiques des Fonctions Cérébrales, UR909, F‐78352 Jouy en Josas, France |
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Abstract: | Rat neural stem cells/neural progenitors (NSC/NP) are generally grown in serum‐free medium. In this study, NSC/NP were supplemented with the main long‐chain polyunsaturated fatty acids (PUFAs) present in the brain, arachidonic acid (AA), or docosahexaenoic acid (DHA), and were monitored for their growth. Lipid and fatty acid contents of the cells were also determined. Under standard conditions, the cells were characterized by phospholipids displaying a highly saturated profile, and very low levels of PUFAs. When cultured in the presence of PUFAs, the cells easily incorporated them into the phospholipid fraction. We also compared the presence of three membrane proteins in the lipid raft fractions: GFR and connexin 43 contents in the rafts were increased by DHA supplementation, whereas Gβ subunit content was not significantly modified. The restoration of DHA levels in the phospholipids could profoundly affect protein localization and, consequently, their functionalities. J. Cell. Biochem. 110: 1356–1364, 2010. © 2010 Wiley‐Liss, Inc. |
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Keywords: | neural stem cells polyunsaturated fatty acids docosahexaenoic acid lipid rafts |
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