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Structural Biology and Analytical Chemistry Approaches for Characterizing C-Glycoside Metabolic Enzymes in Human Gut Microbiota
Published on: May 23, 2025
Purification and Identification of a Multidomain Pectin from Phyllanthus emblica L.: Structure-Activity Relationship
Xiaoyu Duan1, Mouming Zhao1,2, Lianzhu Lin1,2
1School of Food Science and Engineering, South China University of Technology, Guangzhou 510641, China.
Abstract:
Natural functional hydrophilic colloids with glycolipid-modulating activities demonstrated tremendous developmental potential. Establishing precise structure-activity relationships requires highly purified and structurally defined pectin. A novel multidomain pectin (P1) was successfully purified from P. emblica through integrated yeast fermentation, XAD-16 macroporous resin treatment, and ultrafiltration. Structure-activity analysis demonstrated that RG-I domain proportion/side chain type and molecular conformation (depolymerization and aggregation) of polysaccharide exerted comprehensive effects on the upper gastrointestinal glycolipid regulation. In addition, multidomain pectin with a stable structure could show greater proliferative ability of mixed probiotics related to glycolipid metabolism. Molecular simulations identified the RG-I domain as the primary bioactive region. Arabinan side chains mediated starch binding via van der Waals and hydrogen bonding interactions, while galactan components facilitated bile acid and cholesterol complexation through van der Waals interactions. This study delineated the multitarget mechanistic principles underlying P1's modulation of glycolipid metabolism disorders, providing molecular insights for pectin polysaccharide structure-function studies.

