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Structural elucidation and distribution pattern of glucuronic acid in β-glucan from Hypsizygus marmoreus using
Yunhe Qu1, Ziyan Sun2, Xiushi Jia2
1Institute of Innovation Science & Technology, Central Laboratory, Changchun Normal University, No. 677 North Changji Road, Changchun, 130032, China; Engineering Research Center of Glycoconjugates of Ministry of Education, Jilin Provincial Key Laboratory of Chemistry and Biology of Changbai Mountain Natural Drugs, School of Life Sciences, Northeast Normal University, Changchun, 130024, China.
Abstract:
A ∼ 20 kDa heteroglucan composed of glucose (Glc) and glucuronic acid (GlcA) was isolated from Hypsizygus marmoreus. Preliminary analysis through methylation analysis and nuclear magnetic resonance (NMR) showed the backbone consisted of β-1,6-linked d-glucopyranosyl (Glcp) residues, with branches at O-3 positions containing t-β-D-Glcp residues. The linkages of GlcA was carried out using partial acid and glycosidase hydrolysis. HILIC-FLR/ESI-MSn, methylation and NMR of the partial acid and glycosidase hydrolysis products revealed GlcpA was in the forms of t-β-D-GlcpA and β-1,4-D-GlcpA attached to the C-3 position of part of the Glc in the main chain. Furthermore, the β-glucan exhibited structural heterogeneity, comprising three distinct domains: (a) unsubstituted β-1,6-glucan; (b) β-1,6-heteroglucan substituted with GlcA (1-2 sugar residues); and (c) β-1,6-heteroglucan substituted with Glc (single sugar residue). The proposed heteropolysaccharide structure provides critical insights into the structural diversity of mushroom-derived β-1,6-glucans, thereby facilitating future investigations into their structure-activity relationships.
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