首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Coupling reactions of trehalose synthase from Pyrococcus horikoshii: Cost-effective synthesis and anti-adhesive activity of α-galactosyl oligosaccharides using a one-pot three-enzyme system with trehalose
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Coupling reactions of trehalose synthase from Pyrococcus horikoshii: Cost-effective synthesis and anti-adhesive activity of α-galactosyl oligosaccharides using a one-pot three-enzyme system with trehalose

机译:霍氏热球菌海藻糖合酶的偶联反应:使用一锅三酶与海藻糖的经济合算合成α-半乳糖基寡糖和抗粘附活性

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摘要

A new sugar nucleotide cycling (SNC) process was established in a one-pot three enzyme-coupled reaction using disaccharide trehalose. Trehalose synthase from Pyrococcus horikoshii could be applied to the SNC process for the synthesis of functional α-galactosyl oligosaccharides, α-galactose (Gal) epitopes and globotriose, using the effective regeneration of UDP-Gal. The α-Gal epitopes and globotriose were found to attach to the cell-surface of enteropathogenic Escherichia coli O127 (EPEC) which were bound to human Caco-2 cells. These α-galactosyl oligosaccharides were able to prohibit the attachment of EPEC, which could have resulted in colonization and disease. The α-Gal epitope III with a lactulose acceptor showed the most inhibitory activity of anti-adhesion. The results suggest that the α-galactosyl oligosaccharides may be alternative anti-adhesion molecules that overcome antibiotic resistance.
机译:使用二糖海藻糖在一锅三酶联反应中建立了新的糖核苷酸循环(SNC)过程。利用UDP-Gal的有效再生,来自火球菌的海藻糖合酶可用于SNC工艺中,以合成功能性α-半乳糖基寡糖,α-半乳糖(Gal)表位和球三糖。发现α-Gal表位和球三糖附着在与人Caco-2细胞结合的肠致病性大肠杆菌O127(EPEC)的细胞表面。这些α-半乳糖基寡糖能够阻止EPEC的附着,这可能导致定植和疾病。具有乳果糖受体的α-Gal表位III显示出最强的抗粘附抑制活性。结果表明,α-半乳糖基寡糖可能是克服抗生素耐药性的替代性抗粘附分子。

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