Synthesis of novel NBD-GM1 and NBD-GM2 for the transfer activity of GM2-activator protein by a FRET-based assay system
Open Access
- 3 August 2005
- journal article
- research article
- Published by Oxford University Press (OUP) in Glycobiology
- Vol. 15 (12) , 1302-1311
- https://doi.org/10.1093/glycob/cwj018
Abstract
The ganglioside-activator protein is an essential cofactor for the lysosomal degradation of ganglioside GM2 (GM2) by β‐hexosaminidase A. It mediates the interaction between the water-soluble exohydrolase and its membrane-embedded glycolipid substrate at the lipid-water interphase. Mutations in the gene encoding this glycoprotein result in a fatal neurological storage disorder, the AB variant of GM2-gangliosidosis. In order to efficiently and sensitively probe the glycolipid binding and membrane activity of this cofactor, we synthesized two new fluorescent glycosphingolipid (GSL) probes, 2‐NBD-GM1 and 2-NBD-GM2. Both compounds were synthesized in a convergent and multistep synthesis starting from the respective gangliosides isolated from natural sources. The added functionality of 2-aminogangliosides allowed us to introduce the chromophore into the region between the polar head group and the hydrophobic anchor of the lipid. Both fluorescent glycolipids exhibited an extremely low off-rate in model membranes and displayed very efficient resonance energy transfer to rhodamine-dioleoyl phosphoglycerol ethanolamine (rhodamine-PE) as acceptor. The binding to GM2-activator protein (GM2AP) and the degrading enzyme was shown to be unaltered compared to their natural analogues. A novel fluorescence-resonance energy transfer (FRET) assay was developed to monitor in real time the protein-mediated intervesicular transfer of these lipids from donor to acceptor liposomes. The data obtained indicate that this rapid and robust system presented here should serve as a valuable tool to probe quantitatively and comprehensively the membrane activity of GM2AP and other sphingolipid activator proteins and facilitate further structure-function studies aimed at delineating independently the lipid- and the enzyme-binding mode of these essential cofactors.Keywords
This publication has 28 references indexed in Scilit:
- The α-Helical Domain of Liver Fatty Acid Binding Protein Is Responsible for the Diffusion-Mediated Transfer of Fatty Acids to Phospholipid MembranesBiochemistry, 2004
- Interaction of the GM2‐activator protein with phospholipid–ganglioside bilayer membranes and with monolayers at the air–water interfaceEuropean Journal of Biochemistry, 1999
- Recombinant GM2-activator protein stimulates in vivo degradation of GA2 in GM2 gangliosidosis AB variant fibroblasts but exhibits no detectable binding of GA2 in an in vitro assay.Neurochemical Research, 1999
- Activator proteins and topology of lysosomal sphingolipid catabolismBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1992
- Chemistry and biology of N-(7-nitrobenz-2-oxa-1,3-diazol-4-yl)-labeled lipids: fluorescent probes of biological and model membranesChemistry and Physics of Lipids, 1990
- Spectroscopic and ionization properties of N-(7-nitrobenz-2-oxa-1,3-diazol-4-yl)-labeledlipidsinmodelmembranesBiochimica et Biophysica Acta (BBA) - Biomembranes, 1988
- Properties of a specific glycolipid transfer protein from bovine brainChemistry and Physics of Lipids, 1985
- Complexing of Glycolipids and Their Transfer between Membranes by the Activator Protein for Degradation of Lysosomal Ganglioside GM2European Journal of Biochemistry, 1982
- Purification and Characterization of an Activator Protein for the Degradation of Glycolipids GM2and GA2by Hexosaminidase AHoppe-Seyler´s Zeitschrift Für Physiologische Chemie, 1979
- AB variant of infantile GM2 gangliosidosis: deficiency of a factor necessary for stimulation of hexosaminidase A-catalyzed degradation of ganglioside GM2 and glycolipid GA2.Proceedings of the National Academy of Sciences, 1978