Institute of Biotechnology and Biochemical Engineering, Graz University of Technology, Graz, Austria.
Austrian Centre of Industrial Biotechnology, Graz, Austria.
Biotechnol Bioeng. 2020 May;117(5):1597-1602. doi: 10.1002/bit.27293. Epub 2020 Feb 13.
The D746E variant of Bifidobacterium bifidum β-N-acetyl-hexosaminidase is a promising glycosynthase (engineered glycosidase deficient in hydrolase activity) for the synthesis of lacto-N-triose II (LNT II), a core structural unit of human milk oligosaccharides. Here, we develop a flow process for the glycosynthase reaction, which is the regioselective β-1,3-glycosylation of lactose from a d-glucosamine 1,2-oxazoline donor. Using the glycosynthase immobilized on agarose beads (∼30 mg/g) packed into a fixed bed (1 ml), we show stable continuous production of LNT II (145-200 mM) at quantitative yield from the donor substrate. The wild-type β-N-acetyl-hexosaminidase used under exactly comparable conditions gives primarily (∼85%) the hydrolysis product d-glucosamine. By enabling short residence times (2 min) that are challenging for mixed-vessel types of reactor to establish, the glycosynthase flow reactor succeeds in an effective uncoupling of the LNT II formation (∼80-100 mM/min) from the slower side reactions (decomposition of donor substrate, enzymatic hydrolysis of LNT II) to obtain optimum synthetic efficiency. Our study thus provides a strong case for the application of flow chemistry principles to glycosynthase reactions and by that, it reveals the important synergy between enzyme and reaction engineering for biocatalytic synthesis of oligosaccharides.
双歧杆菌β-N-乙酰己糖胺酶的 D746E 变体是一种很有前途的糖基合成酶(工程化的糖苷酶,缺乏水解酶活性),可用于合成乳-N-三糖 II(LNT II),这是人乳寡糖的核心结构单元。在这里,我们开发了一种糖基合成酶反应的流程工艺,这是一种从葡萄糖胺 1,2-恶唑啉供体中对乳糖进行区域选择性β-1,3-糖基化的反应。我们使用固定床(1ml)中琼脂糖珠(约 30mg/g)固定化的糖基合成酶,展示了从供体底物定量产率稳定连续生产 LNT II(145-200mM)的能力。在完全可比的条件下使用的野生型β-N-乙酰己糖胺酶主要产生(约 85%)水解产物葡萄糖胺。通过实现短停留时间(2 分钟),这对于混合容器类型的反应器来说是具有挑战性的,糖基合成酶流动反应器成功地有效解耦了 LNT II 的形成(80-100mM/min)和较慢的副反应(供体底物的分解,LNT II 的酶促水解),从而获得最佳的合成效率。因此,我们的研究为糖基合成酶反应应用流动化学原理提供了有力的证据,并通过这种方式揭示了酶和反应工程在糖基化酶法合成寡糖方面的重要协同作用。