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Synthesis and Characterization of Sialylated Lactose-and Lactulose-Derived Oligosaccharides by Trypanosoma cruzi Trans-sialidase

机译:唾液酸化乳糖的合成与表征克氏锥虫转唾液酸酶产生的乳糖和乳果糖寡糖

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摘要

Sialylated oligosaccharides contribute 12.6–21.9% of total free oligosaccharides in human milk (hMOS). These acidic hMOS possess prebiotic properties and display antiadhesive effects against pathogenic bacteria. Only limited amounts of sialylated hMOS are currently available. The aim of our work is to enzymatically synthesize sialylated oligosaccharides mimicking hMOS functionality. In this study, we tested mixtures of glucosylated-lactose (GL34), galactosylated-lactulose (LGOS), and galacto-oligosaccharide (Vivinal GOS) molecules, as trans-sialylation acceptor substrates. The recombinant trans-sialidase enzyme from Trypanosoma cruzi (TcTS) was used for enzymatic decoration, transferring (α2→3)-linked sialic acid from donor substrates to nonreducing terminal β-galactopyranosyl units of these acceptor substrates. The GL34 F2 2-Glc-Lac compound with an accessible terminal galactosyl residue was sialylated efficiently (conversion degree of 47.6%). TcTS sialylated at least 5 LGOS structures and 11 Vivinal GOS DP3–4 compounds. The newly synthesized sialylated oligosaccharidesare interesting as potential hMOS mimics for applicationsin biomedical and functional-food products.
机译:唾液酸化寡糖占人乳(hMOS)中总游离寡糖的12.6–21.9%。这些酸性hMOS具有益生元特性,并显示出对病原菌的抗粘连作用。当前仅可获得有限量的唾液酸化的hMOS。我们工作的目的是酶促合成模仿hMOS功能的唾液酸化寡糖。在这项研究中,我们测试了糖基化乳糖(GL34),半乳糖基化乳糖(LGOS)和半乳糖低聚糖(Vivinal GOS)分子的混合物,作为反唾液酸化受体底物。来自克鲁氏锥虫(TcTS)的重组反式唾液酸酶用于酶修饰,​​将(α2→3)连接的唾液酸从供体底物中转移到这些受体底物的非还原性末端β-吡喃半乳糖基单元上。带有可触及的末端半乳糖基残基的GL34 F2 2-Glc-Lac化合物被有效唾液酸化(转化率为47.6%)。 TcTS唾液酸化了至少5种LGOS结构和11种Vivinal GOS DP3-4化合物。新合成的唾液酸化寡糖作为潜在的hMOS模拟应用很有趣在生物医学和功能性食品中的应用。

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