Slater Alanna S, McDonald Andrew G, Hickey Rita M, Davey Gavin P
Teagasc Food Research Centre, Moorepark, Fermoy, Ireland.
School of Biochemistry and Immunology, Trinity College Dublin, Dublin, Ireland.
Front Mol Biosci. 2025 Apr 30;12:1587602. doi: 10.3389/fmolb.2025.1587602. eCollection 2025.
Human milk oligosaccharides (HMOs) are a diverse group of complex carbohydrates that play crucial roles in infant health, promoting a beneficial gut microbiota, modulating immune responses, and protecting against pathogens. Central to the synthesis of HMOs are glycosyltransferases, a specialized class of enzymes that catalyse the transfer of sugar moieties to form the complex glycan structures characteristic of HMOs. This review provides an in-depth analysis of glycosyltransferases, beginning with their classification based on structural and functional characteristics. The catalytic activity of these enzymes is explored, highlighting the mechanisms by which they facilitate the precise addition of monosaccharides in HMO biosynthesis. Structural insights into glycosyltransferases are also discussed, shedding light on how their conformational features enable specific glycosidic bond formations. This review maps out the key biosynthetic pathways involved in HMO production, including the synthesis of lactose, and subsequent fucosylation and sialylation processes, all of which are intricately regulated by glycosyltransferases. Industrial methods for HMO synthesis, including chemical, enzymatic, and microbial approaches, are examined, emphasizing the role of glycosyltransferases in these processes. Finally, the review discusses future directions in glycosyltransferase research, particularly in enhancing the efficiency of HMO synthesis and developing advanced analytical techniques to better understand the structural complexity and biological functions of HMOs.
人乳寡糖(HMOs)是一类多样的复杂碳水化合物,在婴儿健康中发挥着关键作用,可促进有益的肠道微生物群生长、调节免疫反应并抵御病原体。糖基转移酶是HMOs合成的核心,它是一类特殊的酶,催化糖基的转移以形成HMOs特有的复杂聚糖结构。本综述对糖基转移酶进行了深入分析,首先根据其结构和功能特征进行分类。探讨了这些酶的催化活性,重点介绍了它们在HMO生物合成中促进单糖精确添加的机制。还讨论了糖基转移酶的结构见解,揭示了其构象特征如何实现特定糖苷键的形成。本综述梳理了HMO生产中涉及的关键生物合成途径,包括乳糖的合成以及随后的岩藻糖基化和唾液酸化过程,所有这些过程均受糖基转移酶的复杂调控。研究了HMO合成的工业方法,包括化学、酶法和微生物法,强调了糖基转移酶在这些过程中的作用。最后,本综述讨论了糖基转移酶研究的未来方向,特别是在提高HMO合成效率以及开发先进分析技术以更好地理解HMOs的结构复杂性和生物学功能方面。