Tackling the biophysical properties of sphingolipids to decipher their biological roles

Author:

Carreira Ana C.,Ventura Ana E.,Varela Ana R.P.,Silva Liana C.

Abstract

Abstract From the most simple sphingoid bases to their complex glycosylated derivatives, several sphingolipid species were shown to have a role in fundamental cellular events and/or disease. Increasing evidence places lipid-lipid interactions and membrane structural alterations as central mechanisms underlying the action of these lipids. Understanding how these molecules exert their biological roles by studying their impact in the physical properties and organization of membranes is currently one of the main challenges in sphingolipid research. Herein, we review the progress in the state-of-the-art on the biophysical properties of sphingolipid-containing membranes, focusing on sphingosine, ceramides, and glycosphingolipids.

Publisher

Walter de Gruyter GmbH

Subject

Clinical Biochemistry,Molecular Biology,Biochemistry

Reference240 articles.

1. The complexity of sphingolipid biosynthesis in the endoplasmic reticulum;Tidhar;Biochim Biophys Acta Mol Cell Res,2013

2. Absence of fluid - ordered fluid - disordered phase coexistence in ceramide POPC mixtures containing cholesterol;Fidorra;Biophys J,2006

3. Influence of sphingosine on the thermal phase behaviour of neutral and acidic phospholipid liposomes;Kõiv;Chem Phys Lipids,1993

4. induced budding : a raft - mediated mechanism for endocytosis and morphology of caveolae;Sarasij;Chirality Biophys J,2007

5. nanotubes and helical ribbons formed by hydrated galactosylceramides : acyl chain and headgroup effects;Kulkarni;Biophys J,1995

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