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A Bacterial beta 1-3-Galactosyltransferase Enables Multigram-Scale Synthesis of Human Milk Lacto-N-tetraose (LNT) and Its Fucosides

机译:细菌β1-3-半乳糖基转移酶使人乳乳酸 - N-四糖(LNT)及其岩藻糖苷的多餐厅级合成能够实现

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摘要

beta 1-3-Linked galactosides such as Gal beta 1-3G1cNAc beta OR are common carbohydrate motifs found in human milk oligosaccharides (HMOSs), glycolipids, and glycoproteins. Efficient and scalable enzymatic syntheses of these structures have proven challenging because of the lack of access to a highly active beta 1-3-galactosyltransferase (beta 3Ga1T) in large amounts. Previously reported E. coli beta 3GalT (EcWbgO) has been identified as a limiting factor for producing a beta 1-3-galactose-terminated human milk oligo-saccharide lacto-N-tetraose (LNT) by fermentation. Here, we report the identification of an EcWbgO homologue from C. violaceum (Cv beta 3GalT) which showed a high efficiency in catalyzing the formation of LNT from lacto-N-triose (LNT II). With the highly active Cv beta 3GalT, multigram-scale (>10 g) synthesis of LNT from lactose was achieved using a sequential one-pot multienzyme (OPME) glycosylation process. The access to Cv beta 3GalT enabled enzymatic synthesis of several fucosylated HMOSs with or without further sialylation, including LNFP II, S-LNF II, LNDFH I, LNFP V, and DiFuc-LNT. Among these, LNFP V and DiFuc-LNT would not be accessible by enzymatic synthesis if an active beta 3GalT were not available.
机译:β1-3连接的半乳​​糖醇,如Galβ1-3G1CNACβ或是在人乳寡糖(HMOSS),糖脂和糖蛋白中发现的常见碳水化合物基序。这些结构的高效且可伸缩的酶合成已被证明是挑战性,因为缺乏大量活性β1-3-半乳糖基转移酶(β3Ga1t)大量。先前报道了大肠杆菌β3GALT(ECWBGO)已被鉴定为通过发酵产生β1-3-半乳糖封端的人乳寡糖(LNT)的β1-3-半乳糖封端的人乳寡核苷酸脱乳酸钠(LNT)的限制因素。在这里,我们报告了来自C. violaceum(CVβ3GALT)的ECWBGO同源物的鉴定,所述紫外线(CVβ3GALT)显示出高效率的催化Lnt从乳酸-N-三糖(LNT II)的形成。利用高活性CVβ3GALT,使用序贯的单盆脱酶(OPME)糖基化方法,实现了从乳糖中获得LNT的Multigram级(> 10g)。对CVβ3GALT的进入能够酶促合成几种岩藻糖基化的HM组,或无需进一步的唾液酸化,包括LNFP II,S-LNF II,LNDFH I,LNFP V和DIFUC-LNT。其中,如果不可用活性β3gAlt,则不会通过酶合成来获得LNFP V和DIFUC-LNT。

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