Synthesis of GlcN- and GlcNAc-type inositol glycans of plant sphingolipid GIPCs for LC–MS/MS analysis

Glycosylinositol phosphoceramides (GIPCs) are major sphingolipids in plant plasma membranes. GIPCs possess structurally diverse inositol glycan (IG) head groups. While the chemical structure of hexose-type IGs has been elucidated, the chemical structure of hexosamine (HexN)- and N -acetylhexosamine (HexNAc)-type IGs remain poorly understood. This study reports the synthesis of amino sugar-containing IGs, GlcN-α(1→4)-GlcA-α(1→2)-Ins 1 and GlcNAc-α(1→4)-GlcA-α(1→2)-Ins 2 , and their application as authentic standards for LC–MS/MS analysis. GlcN- and GlcNAc-type IGs were synthesized via 4,6- O -phenylboronic ester-directed α-selective glucosylation followed by global deprotection and selective N -acetylation. Naturally occurring HexN- and HexNAc-type IGs were obtained by the enzymatic degradation of GIPCs isolated from broad bean pods and radish sprouts. Using amino sugar-containing IGs 1 and 2 as authentic standards, the chemical structures of the HexN- and HexNAc-type IGs were investigated by LC–MS/MS analysis. The retention times and MS/MS fragmentation patterns of the natural IGs were in good agreement with those of the synthetic IGs. These results demonstrate that natural HexN- and HexNAc-type IGs correspond to 1 and 2 . This study provides the first direct structural confirmation of amino sugar-containing IGs in plant GIPCs and highlights the utility of authentic synthetic standards for uncovering the hidden IG structural diversity of plant GIPCs.

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Journal
Carbohydrate Research
Published
2026-09-04
DOI
https://doi.org/10.1016/j.carres.2026.110094
Primary Topic
Sphingolipid Metabolism and Signaling
Type
article
Field-Weighted Citation Impact
0.00

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article

Synthesis of GlcN- and GlcNAc-type inositol glycans of plant sphingolipid GIPCs for LC–MS/MS analysis

Hidenori Tanaka, Hiromune Ando, Naoko Komura, Toshiki Ishikawa et al.
Carbohydrate Research
Sphingolipid Metabolism and Signaling
article

Synthesis of GlcN- and GlcNAc-type inositol glycans of plant sphingolipid GIPCs for LC–MS/MS analysis

Hidenori Tanaka, Hiromune Ando, Naoko Komura, Toshiki Ishikawa, Akihiro Imamura, Tamotsu Tanaka, Minoru Nagano, Yuta Umemura, Sota Suda
article en

Abstract

Glycosylinositol phosphoceramides (GIPCs) are major sphingolipids in plant plasma membranes. GIPCs possess structurally diverse inositol glycan (IG) head groups. While the chemical structure of hexose-type IGs has been elucidated, the chemical structure of hexosamine (HexN)- and N -acetylhexosamine (HexNAc)-type IGs remain poorly understood. This study reports the synthesis of amino sugar-containing IGs, GlcN-α(1→4)-GlcA-α(1→2)-Ins 1 and GlcNAc-α(1→4)-GlcA-α(1→2)-Ins 2 , and their application as authentic standards for LC–MS/MS analysis. GlcN- and GlcNAc-type IGs were synthesized via 4,6- O -phenylboronic ester-directed α-selective glucosylation followed by global deprotection and selective N -acetylation. Naturally occurring HexN- and HexNAc-type IGs were obtained by the enzymatic degradation of GIPCs isolated from broad bean pods and radish sprouts. Using amino sugar-containing IGs 1 and 2 as authentic standards, the chemical structures of the HexN- and HexNAc-type IGs were investigated by LC–MS/MS analysis. The retention times and MS/MS fragmentation patterns of the natural IGs were in good agreement with those of the synthetic IGs. These results demonstrate that natural HexN- and HexNAc-type IGs correspond to 1 and 2 . This study provides the first direct structural confirmation of amino sugar-containing IGs in plant GIPCs and highlights the utility of authentic synthetic standards for uncovering the hidden IG structural diversity of plant GIPCs.

Carbohydrate ResearchVol. 570
Fukuoka Women's University (JP), Ritsumeikan University (JP), Gifu University (JP), Saitama University (JP)
Japan Society for the Promotion of Science
Openalex Percentile: Top 17%
Sphingolipid Metabolism and Signaling
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