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Isolation of Human Milk Difucosyl Nona- and Decasaccharides by Ultrahigh-Temperature Preparative PGC-HPLC and Identification of Novel Difucosylated Heptaose and Octaose Backbones by Negative-Ion ESI-MS n .

Authors :
Cao C
Cheng Y
Zheng Y
Huang B
Guo Z
Yu L
Mulloy B
Tajadura-Ortega V
Chai W
Yan J
Liang X
Source :
Analytical chemistry [Anal Chem] 2024 Apr 23; Vol. 96 (16), pp. 6170-6179. Date of Electronic Publication: 2024 Apr 14.
Publication Year :
2024

Abstract

Despite their many important physiological functions, past work on the diverse sequences of human milk oligosaccharides (HMOs) has been focused mainly on the highly abundant HMOs with a relatively low degree of polymerization (DP) due to the lack of efficient methods for separation/purification and high-sensitivity sequencing of large-sized HMOs with DP ≥ 10. Here we established an ultrahigh-temperature preparative HPLC based on a porous graphitized carbon column at up to 145 °C to overcome the anomeric α/β splitting problem and developed further the negative-ion ESI-CID-MS/MS into multistage MS <superscript>n</superscript> using a combined product-ion scanning of singly charged molecular ion and doubly charged fragment ion of the branching Gal and adjacent GlcNAc residues. The separation and sequencing method allows efficient separation of a neutral fraction with DP ≥ 10 into 70 components, among which 17 isomeric difucosylated nona- and decasaccharides were further purified and sequenced. As a result, novel branched difucosyl heptaose and octaose backbones were unambiguously identified in addition to the conventional linear and branched octaose backbones. The novel structures of difucosylated DF- novo -heptaose, DF- novo -LNO I, and DF- novo -LNnO I were corroborated by NMR. The various fucose-containing Lewis epitopes identified on different backbones were confirmed by oligosaccharide microarray analysis.

Details

Language :
English
ISSN :
1520-6882
Volume :
96
Issue :
16
Database :
MEDLINE
Journal :
Analytical chemistry
Publication Type :
Academic Journal
Accession number :
38616610
Full Text :
https://doi.org/10.1021/acs.analchem.3c05008