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Enzymatic synthesis of -galactosyl fucose using recombinant bifidobacterial -galactosidase and its prebiotic effect

机译:使用重组双歧杆菌酶磷酸酶及其益生元酶酶合成 - 过乳糖基粘膜的合成及其益生元效应

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Breast-fed infants have Bifidobacterium-rich gut microbiota compared to infants fed formula. Fucosylated oligosaccharides are the major components of human milk oligosaccharide (HMO) which confer various beneficial effects including prebiotic effect and protection from pathogenic infection on the host. A novel prebiotics was developed using bifidobacterial -galactosidase and fucose and lactose as substrates. Structure analysis revealed it as -D-galactopyranosyl-(13)-O-L-fucopyranose named as -galactosyl fucose (gal-fuc), which is different from common fucosylated HMOs with 1-2, 1-3, and 1-4 linkages. Among the four Lactobacillus strains examined, all but L. delbrueckii subsp. bilgaricus KCTC 3635 grew better on gal-fuc than on -GOS. Among the 11 bifidobacterial species examined, all except for B. bifium used gal-fuc as much as GOS. Moreover, the gal-fuc was noticeably better used by Bifidobacterium infantis, the major intestinal bacteria of breast fed infant. Among 15 non-probiotic bacteria, only 4 strains used gal-fuc better than -GOS. In conclusion, a novel gal-fuc is expected to contribute to beneficial changes of gut microbiota.
机译:与婴儿喂养配方相比,母乳喂养的婴儿具有双歧杆菌的肠道微生物。岩氧化的寡糖是人乳低聚糖(HMO)的主要成分,其赋予各种有益效果,包括益生元效应和宿主对致病感染的保护。使用双歧杆菌 - 高烷基酶和岩藻糖和乳糖作为基质开发了一种新的益生元。结构分析显示为-D-半乳糖糖基 - (13)-O-L-葡萄糖(13)-1-粘合剂(13)-1-粘丝糖糖,其与糖基叶糖(GAL-FUC)不同,其不同于含有1-2,1-3和1-4个键的常见的岩藻糖基化的HMOS。在审查的四种乳酸杆菌中,除了L. delbrueckii subsp之外。 Bilgaricus KCTC 3635在GAL-FUC上增长更好,而不是在-GO上。在检查的11个双歧杆菌种类中,除了B. Bifium的Bifium使用Gal-Fuc,如GoS。此外,Bifidobacterions Infantis显着使用GAL-FUC,乳房喂养婴儿的主要肠道细菌。在15种非益生菌中,只有4个菌株使用GAL-FUC优于-GOS。总之,预计新的GAL-FUC将有助于肠道微生物的有益变化。

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