没食子酸
咖啡酸
右旋蔗糖酶
化学
结合
基质(水族馆)
有机化学
罗伊乳杆菌
色谱法
乳酸
抗氧化剂
细菌
乳酸菌
生物
发酵
数学分析
肠系膜明串珠菌
遗传学
数学
生态学
作者
Tizian Klingel,B. Bindereif,Martina Hadamjetz,Anja Fischer,U.S. van der Schaaf,Daniel Wefers
标识
DOI:10.1021/acs.jafc.9b04495
摘要
Glucansucrases can be used to glucosylate various plant-derived phenolic compounds by using sucrose as donor substrate. We applied Lactobacillus reuteri TMW 1.106 dextransucrase to glucosylate the acceptor substrates caffeic acid and gallic acid. Subsequently, monoglucosylated and in particular oligo- and polyglucosylated conjugates were characterized by using different chromatographic techniques and two-dimensional NMR spectroscopy. Both acceptors were substituted at positions O3 and O4. Under the conditions used, two monoglucosylated products were formed for caffeic acid, whereas only one O3-monosubstituted conjugate was detected for gallic acid. However, both acceptors resulted in O4-substituted oligo- and polyglucosylated conjugates, the amount of which was higher from gallic acid than from caffeic acid. Profile analysis tensiometry suggested that, in contrast to unmodified dextrans, oligo- and polymeric glucoconjugates of gallic acid are highly interfacially active. Overall, we provide the first detailed characterization of enzymatically conjugated oligo- and polymeric dextrans, which may have further potential as functional ingredients.
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