Notes on improved procedures for the chemical modification and degradation of glycosphingolipids.

Some simplified and efficient procedures are described for the following chemical modifications of glycophingolipids. 1) The olefinic bond of the ceramide moiety of the acetylated glycolipid was quantitatively oxidized with osmium tetroxide and periodic acid. Treatment of the resulting glycolipid al...

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Main Authors: D L MacDonald, L M Patt, S Hakomori
Format: Article
Language:English
Published: Elsevier 1980-07-01
Series:Journal of Lipid Research
Online Access:http://www.sciencedirect.com/science/article/pii/S0022227520422357
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spelling doaj-de44fed04d67458b94940958240064282021-04-24T05:54:20ZengElsevierJournal of Lipid Research0022-22751980-07-01215642645Notes on improved procedures for the chemical modification and degradation of glycosphingolipids.D L MacDonaldL M PattS HakomoriSome simplified and efficient procedures are described for the following chemical modifications of glycophingolipids. 1) The olefinic bond of the ceramide moiety of the acetylated glycolipid was quantitatively oxidized with osmium tetroxide and periodic acid. Treatment of the resulting glycolipid aldehyde with sodium methodixe resulted in the release of the intact oligosaccharide. The yield of oligosaccharides under the new conditions was much higher than previously found. 2) The olefinic bond was also oxidized to a carboxyl function by either of two methods: a) the aldehyde group resulting from the above oxidation was further oxidized with performic acid; and b) the olefinic bond of the fully acetylated glycolipid was oxidized directly to the acid by potassium permanganate in acetone. 3) The methyl ester of the carboxyl group of the sialic acid in gangliosides can be formed with diazomethane in methanol-ether after treatment of the gangliosides with Dowex-50 (H+ form). Possible uses of these glycolipid modifications are discussed.http://www.sciencedirect.com/science/article/pii/S0022227520422357
collection DOAJ
language English
format Article
sources DOAJ
author D L MacDonald
L M Patt
S Hakomori
spellingShingle D L MacDonald
L M Patt
S Hakomori
Notes on improved procedures for the chemical modification and degradation of glycosphingolipids.
Journal of Lipid Research
author_facet D L MacDonald
L M Patt
S Hakomori
author_sort D L MacDonald
title Notes on improved procedures for the chemical modification and degradation of glycosphingolipids.
title_short Notes on improved procedures for the chemical modification and degradation of glycosphingolipids.
title_full Notes on improved procedures for the chemical modification and degradation of glycosphingolipids.
title_fullStr Notes on improved procedures for the chemical modification and degradation of glycosphingolipids.
title_full_unstemmed Notes on improved procedures for the chemical modification and degradation of glycosphingolipids.
title_sort notes on improved procedures for the chemical modification and degradation of glycosphingolipids.
publisher Elsevier
series Journal of Lipid Research
issn 0022-2275
publishDate 1980-07-01
description Some simplified and efficient procedures are described for the following chemical modifications of glycophingolipids. 1) The olefinic bond of the ceramide moiety of the acetylated glycolipid was quantitatively oxidized with osmium tetroxide and periodic acid. Treatment of the resulting glycolipid aldehyde with sodium methodixe resulted in the release of the intact oligosaccharide. The yield of oligosaccharides under the new conditions was much higher than previously found. 2) The olefinic bond was also oxidized to a carboxyl function by either of two methods: a) the aldehyde group resulting from the above oxidation was further oxidized with performic acid; and b) the olefinic bond of the fully acetylated glycolipid was oxidized directly to the acid by potassium permanganate in acetone. 3) The methyl ester of the carboxyl group of the sialic acid in gangliosides can be formed with diazomethane in methanol-ether after treatment of the gangliosides with Dowex-50 (H+ form). Possible uses of these glycolipid modifications are discussed.
url http://www.sciencedirect.com/science/article/pii/S0022227520422357
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AT lmpatt notesonimprovedproceduresforthechemicalmodificationanddegradationofglycosphingolipids
AT shakomori notesonimprovedproceduresforthechemicalmodificationanddegradationofglycosphingolipids
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