Using fluorescent variants of Fas and FasL, we show that membrane FasL and Fas form supramolecular clusters that are of flexible shape, but nevertheless stable and persistent. Membrane FasL-induced Fas clusters were formed in caspase-8– or FADD-deficient cells or when a cytoplasmic deletion mutant of Fas was used suggesting that cluster formation is independent of the assembly of the cytoplasmic Fas signaling complex and downstream activated signaling pathways. In contrast, cross-linked soluble FasL failed to aggregate the cytoplasmic deletion mutant of Fas, but still induced aggregation of signaling competent full-length Fas. Moreover, membrane FasL-induced Fas cluster formation occurred in the presence of the lipid raft destabilizing component methyl-β-cyclodextrin, whereas Fas aggregation by soluble FasL was blocked. Together, these data suggest that the extracellular domains of Fas and FasL alone are sufficient to drive membrane FasL-induced formation of supramolecular Fas–FasL complexes, whereas soluble FasL-induced Fas aggregation is dependent on lipid rafts and mechanisms associated with the intracellular domain of Fas.
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28 March 2005
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March 28 2005
The extracellular domains of FasL and Fas are sufficient for the formation of supramolecular FasL-Fas clusters of high stability
Frank Henkler,
Frank Henkler
1Department of Molecular Internal Medicine, Medical Polyclinic, University of Wuerzburg, 97070 Wuerzburg, Germany
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Eva Behrle,
Eva Behrle
2Institute of Cell Biology and Immunology, University of Stuttgart, 70569 Stuttgart, Germany
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Kevin M. Dennehy,
Kevin M. Dennehy
3Institute for Virology and Immunobiology, University of Wuerzburg, 97078 Wuerzburg, Germany
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Andreas Wicovsky,
Andreas Wicovsky
1Department of Molecular Internal Medicine, Medical Polyclinic, University of Wuerzburg, 97070 Wuerzburg, Germany
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Nathalie Peters,
Nathalie Peters
2Institute of Cell Biology and Immunology, University of Stuttgart, 70569 Stuttgart, Germany
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Clemens Warnke,
Clemens Warnke
1Department of Molecular Internal Medicine, Medical Polyclinic, University of Wuerzburg, 97070 Wuerzburg, Germany
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Klaus Pfizenmaier,
Klaus Pfizenmaier
2Institute of Cell Biology and Immunology, University of Stuttgart, 70569 Stuttgart, Germany
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Harald Wajant
Harald Wajant
1Department of Molecular Internal Medicine, Medical Polyclinic, University of Wuerzburg, 97070 Wuerzburg, Germany
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Frank Henkler
1Department of Molecular Internal Medicine, Medical Polyclinic, University of Wuerzburg, 97070 Wuerzburg, Germany
Eva Behrle
2Institute of Cell Biology and Immunology, University of Stuttgart, 70569 Stuttgart, Germany
Kevin M. Dennehy
3Institute for Virology and Immunobiology, University of Wuerzburg, 97078 Wuerzburg, Germany
Andreas Wicovsky
1Department of Molecular Internal Medicine, Medical Polyclinic, University of Wuerzburg, 97070 Wuerzburg, Germany
Nathalie Peters
2Institute of Cell Biology and Immunology, University of Stuttgart, 70569 Stuttgart, Germany
Clemens Warnke
1Department of Molecular Internal Medicine, Medical Polyclinic, University of Wuerzburg, 97070 Wuerzburg, Germany
Klaus Pfizenmaier
2Institute of Cell Biology and Immunology, University of Stuttgart, 70569 Stuttgart, Germany
Harald Wajant
1Department of Molecular Internal Medicine, Medical Polyclinic, University of Wuerzburg, 97070 Wuerzburg, Germany
Correspondence to Harald Wajant: [email protected]
Abbreviations used in this paper: βMCD, methyl-β-cyclodextrin; DISC, death-inducing signaling complex; FADD, Fas-associated death domain; FLIP, fluorescence loss in photobleaching; IAP, inhibitor of apoptosis; ROI, region of interest; SPOTS, signaling protein oligomeric transduction structures.
Received:
January 10 2005
Accepted:
February 16 2005
Online ISSN: 1540-8140
Print ISSN: 0021-9525
The Rockefeller University Press
2005
J Cell Biol (2005) 168 (7): 1087–1098.
Article history
Received:
January 10 2005
Accepted:
February 16 2005
Citation
Frank Henkler, Eva Behrle, Kevin M. Dennehy, Andreas Wicovsky, Nathalie Peters, Clemens Warnke, Klaus Pfizenmaier, Harald Wajant; The extracellular domains of FasL and Fas are sufficient for the formation of supramolecular FasL-Fas clusters of high stability . J Cell Biol 28 March 2005; 168 (7): 1087–1098. doi: https://doi.org/10.1083/jcb.200501048
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