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首页> 外文期刊>Microbiological Research >Utilization of sucrose and analog disaccharides by human intestinal bifidobacteria and lactobacilli: Search of the bifidobacteria enzymes involved in the degradation of these disaccharides
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Utilization of sucrose and analog disaccharides by human intestinal bifidobacteria and lactobacilli: Search of the bifidobacteria enzymes involved in the degradation of these disaccharides

机译:人肠道双歧杆菌和乳杆菌的利用蔗糖和模拟二糖:搜索参与这些二糖的降解的双歧杆菌酶

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摘要

The majority of oligosaccharides used as prebiotics typically consist of a combination of 3 kinds of neutral monosaccharides, D-glucose, D-galactose, and D-fructose. In this context, we aimed to generate new types of prebiotic oligosaccharides containing other monosaccharides, and to date have synthesized various oligosaccharides containing an amino sugar, uronic acid, and their derivatives. In this study, we investigated the effects of 4 kinds of sucrose (Suc) analog disaccharides containing D-glucosamine, N-acetyl-D-glucosamine, D-glucuronic acid, or D-glucuronamide as constituent monosaccharides, on the growth of 8 species of bifidobacteria and 3 species of lactobacilli isolated from the human intestine. The results of these experiments were compared with those obtained from identical experiments using Suc. We confirmed that all bacterial strains could utilize Suc as a nutrient source for growth; in contrast, only specific species of bifidobacteria showed growth with Suc analog disaccharides. When oligosaccharides are utilized as a nutrient source by bacteria, they are often broken down into monosaccharides or their derivatives by cellular enzymes before entering the intracellular glycolytic pathway. Therefore, to clarify the above phenomenon involved in the growth of bifidobacteria using Suc analog disaccharides, we investigated the cellular glycosidases of 3 strains of bifidobacteria shown to be capable or incapable of growth in the presence of these disaccharides. As the result, it was confirmed that the strains capable of growth using Suc analog disaccharides show greater productivity of glycosidases that degrade these disaccharides than strains not capable of growth; however, we have not identified the enzymes here.
机译:作为益生元的大多数寡糖通常由3种中性单糖,D-葡萄糖,D-半乳糖和D-果糖组成。在这种情况下,我们旨在产生含有其他单糖的新型益生元寡糖,并且迄今为于含有氨基糖,助氢及其衍生物的各种寡糖。在这项研究中,我们研究了含有D-葡糖胺,N-乙酰基-D-葡糖胺,D-葡糖醛酸或D-葡萄糖醛胺作为组成单糖的4种蔗糖(SUC)模拟二糖的影响,而不是8种的生长双歧杆菌和3种乳杆菌与人肠隔离的乳杆菌。将这些实验的结果与使用SUC获得的相同实验获得的结果进行了比较。我们证实,所有细菌菌株都可以使用Suc作为生长的营养来源;相反,只有特定的双歧杆菌种类表现出与Suc模拟二糖的生长。当寡糖用细菌用作营养源时,在进入细胞内甘油途径之前,它们通常通过细胞酶分解为单糖或其衍生物。因此,为了阐明使用Suc模拟二糖所涉及双歧杆菌生长的上述现象,我们研究了3个双歧杆菌的细胞糖苷酶显示出在这些二糖的存在下能够或不能生长。结果,证实能够使用Suc模拟二糖生长的菌株表现出更高的糖苷酶的生产率,所述糖苷酶降低这些二糖的诱饵而不是不能生长的菌株;但是,我们没有发现这里的酶。

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