Lipopolysaccharide and ceramide docking to CD14 provokes ligand-specific receptor clustering in rafts

Alexandra Pfeiffer(University of Regensburg), Alfred Böttcher(University of Regensburg), Evelyn Orsó(University of Regensburg), Michael Kapinsky(University of Regensburg), Péter Nagy(University of Debrecen), Andrea Bodnár(University of Debrecen), Ingo Spreitzer(University of Konstanz), Gerhard Liebisch(University of Regensburg), Wolfgang Drobnik(University of Regensburg), Klaus Gempel(München Klinik Schwabing), Markus Horn(University of Regensburg), Stefan Holmer(University of Regensburg), Thomas Härtung(University of Konstanz), Gabriele Multhoff(University of Regensburg), Gerhard J. Schütz(Johannes Kepler University of Linz), Hansgeorg Schindler(Johannes Kepler University of Linz), Artur J. Ulmer(Research Center Borstel - Leibniz Lung Center), Holger Heine(Research Center Borstel - Leibniz Lung Center), Felix Stelter(Universität Greifswald), Christine Schütt(Universitätsmedizin Greifswald), G. Rothe(University of Regensburg), János Szöllõsi(University of Debrecen), Sándor Damjanovich(University of Debrecen), Gerd Schmitz(University of Regensburg)
European Journal of Immunology
November 1, 2001
Cited by 399

Abstract

The glycosylphosphatidylinositol-anchored receptor CD14 plays a major role in the inflammatory response of monocytes to lipopolysaccharide. Here, we describe that ceramide, a constituent of atherogenic lipoproteins, binds to CD14 and induces clustering of CD14 to co-receptors in rafts. In resting cells, CD14 was associated with CD55, the Fcgamma-receptors CD32 and CD64 and the pentaspan CD47. Ceramide further recruited the complement receptor 3 (CD11b/CD18) and CD36 into proximity of CD14. Lipopolysaccharide, in addition, induced co-clustering with Toll-like receptor 4, Fcgamma-RIIIa (CD16a) and the tetraspanin CD81 while CD47 was dissociated. The different receptor complexes may be linked to ligand-specific cellular responses initiated by CD14.


Related Papers

No related papers found

Powered by citation graph analysis