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Lipid raft localization and palmitoylation: identification of two requirements for cell death induction by the tumor suppressors UNC5H
Authors:Maisse Carine  Rossin Aurélie  Cahuzac Nathalie  Paradisi Andrea  Klein Catherine  Haillot Marie-Laure  Hérincs Zoltan  Mehlen Patrick  Hueber Anne-Odile
Institution:aApoptosis, Cancer and Development Laboratory–Equipe Labellisée La Ligue, CNRS UMR5238, Université de Lyon, Centre Léon Berard, 69008 Lyon, France;bDeath receptor signalling and cancer therapy–Equipe Labellisée La Ligue, Institute of Developmental Biology and Cancer Research (IDBC), CNRS UMR 6543, Nice, France
Abstract:UNC5H receptors (UNC5H1, UNC5H2, UNC5H3) are putative tumor suppressors whose expression is lost in numerous cancers. These receptors have been shown to belong to the so-called family of dependence receptors. Such receptors induce apoptosis when their ligand netrin-1 is absent, thus conferring a state of cellular dependence towards ligand presence. Along this line, these receptors may limit tumor progression because they induce the death of tumor cells that grow in settings of ligand unavailability. We show here that UNC5H receptors are localized to cholesterol-and sphingolipid-enriched membrane domains called lipid rafts. We then demonstrate that the lipid raft localization of UNC5H2 is required for the pro-apoptotic activity of unbound UNC5H2. We also propose that this lipid raft localization is probably mediated via the recruitment of adaptor protein(s) within the death domain of UNC5H2 but is not dependent on the post-translational modification by palmitoylation of UNC5H2 even though this palmitoylation is required for UNC5H2 pro-apoptotic activity. Moreover we show that the interaction of UNC5H2 with the downstream pro-apoptotic serine threonine kinase DAPk is dependent on both UNC5H2 lipid raft localization and palmitoylation. Thus, we propose that the UNC5H dependence receptors require lipid raft localization and palmitoylation to trigger apoptosis.
Keywords:UNC5H  Dependence receptor  Apoptosis  Lipid raft  Palmitoylation
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