Your browser doesn't support javascript.
loading
Effect of ceramide on nonraft proteins.
Pabst, Georg; Boulgaropoulos, Beate; Gander, Edgar; Sarangi, Bibhu R; Amenitsch, Heinz; Raghunathan, Velayudhan A; Laggner, Peter.
Affiliation
  • Pabst G; Institute of Biophysics and Nanosystems Research, Austrian Academy of Sciences, Schmiedlstr. 6, 8042, Graz, Austria. Georg.Pabst@oeaw.ac.at
J Membr Biol ; 231(2-3): 125-32, 2009 Oct.
Article in En | MEDLINE | ID: mdl-19882097
ABSTRACT
The currently accepted model of biological membranes involves a heterogeneous, highly dynamic organization, where certain lipids and proteins associate to form cooperative platforms ("rafts") for cellular signaling or transport processes. Ceramides, a lipid species occurring under conditions of cellular stress and apoptosis, are considered to stabilize these platforms, thus modulating cellular function. The present study focuses on a previously unrecognized effect of ceramide generation. In agreement with previous studies, we find that ceramide leads to a depletion of sphingomyelin from mixtures with palmitoyl oleoyl phosphatidylcholine bilayers, forming a ceramide-sphingomyelin-rich gel phase that coexists with a fluid phase rich in palmitoyl oleoyl phosphatidylcholine. Interestingly, however, this latter phase has an almost fourfold smaller bending rigidity compared to a sphingomyelin-palmitoyl oleoyl phosphatidylcholine mixture lacking ceramide. The significant change of membrane bulk properties can have severe consequences for conformational equilibria of membrane proteins. We discuss these effects in terms of the lateral pressure profile concept for a simple geometric model of an ion channel and find a significant inhibition of its activity.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Ceramides / Lipid Bilayers / Membrane Proteins Language: En Journal: J Membr Biol Year: 2009 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Ceramides / Lipid Bilayers / Membrane Proteins Language: En Journal: J Membr Biol Year: 2009 Document type: Article Affiliation country: