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Updated: Aug 14, 2026

Characterization of MLKL-mediated Plasma Membrane Rupture in Necroptosis
Published on: August 7, 2018
Fas ligand is localized to membrane rafts, where it displays increased cell death-inducing activity
Nathalie Cahuzac1, Wiebke Baum, Vladimir Kirkin
1Institute of Signaling, Developmental Biology and Cancer Research, CNRS UMR 6543, 06189 Nice, France.
Abstract:
Fas ligand (FasL), a member of the TNF protein family, potently induces cell death by activating its matching receptor Fas. Fas-mediated killing plays a critical role in naturally and pathologically occurring cell death, including development and homeostasis of the immune system. In addition to its receptor-interacting and cell death-inducing extracellular domain, FasL has a well-conserved intracellular portion with a proline-rich SH3 domain-binding site probably involved in non-apoptotic functions. We report here that, as with the Fas receptor, a fraction of FasL is constitutively localized in rafts. These dynamic membrane microdomains, enriched in sphingolipids and cholesterol, are important for cell signaling and trafficking processes. We show that FasL is partially localized in rafts and that increased amounts of FasL are found in rafts after efficient FasL/Fas receptor interactions. Raft disorganization after cholesterol oxidase treatment and deletions within the intracellular FasL domain diminish raft partitioning and, most important, lead to decreased FasL killing. We conclude that FasL is recruited into lipid rafts for maximum Fas receptor contact and cell death-inducing potency. These findings raise the possibility that certain pathologic conditions may be treated by altering the cell death-inducing capability of FasL with drugs affecting its raft localization.
Insights
Fas ligand (FasL) is recruited into lipid rafts, enhancing its cell death-inducing ability. Disrupting this raft localization reduces FasL
Area of Science:
- Cell Biology
- Immunology
- Molecular Biology
Background:
- Fas ligand (FasL), a TNF family member, induces cell death via Fas receptor activation.
- Fas-mediated killing is crucial for immune system homeostasis and pathological cell death.
- FasL possesses an intracellular domain with potential non-apoptotic functions.
Purpose of the Study:
- To investigate the role of lipid rafts in FasL localization and function.
- To determine if FasL partitioning into rafts affects its cell death-inducing potency.
Main Methods:
- Immunofluorescence microscopy to assess FasL localization in rafts.
- Cholesterol oxidase treatment to disrupt lipid rafts.
- Site-directed mutagenesis to delete intracellular FasL domains.
Main Results:
- FasL is constitutively localized in lipid rafts.
- Raft association of FasL increases upon Fas receptor interaction.
- Disruption of rafts or intracellular deletions decrease FasL raft localization and cell death induction.
Conclusions:
- Lipid raft recruitment is essential for maximal FasL cell death-inducing potency.
- Targeting FasL's raft localization may offer therapeutic strategies for diseases involving FasL-mediated cell death.
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