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Novel Enzyme Actions for Sulphated Galactofucan Depolymerisation and a New Engineering Strategy for Molecular Stabilisation of Fucoidan Degrading Enzymes

机译:硫酸化半乳聚糖解聚的新型酶作用和岩藻聚糖降解酶分子稳定的新工程策略

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摘要

Fucoidans from brown macroalgae have beneficial biomedical properties but their use as pharma products requires homogenous oligomeric products. In this study, the action of five recombinant microbial fucoidan degrading enzymes were evaluated on fucoidans from brown macroalgae: Sargassum mcclurei, Fucus evanescens, Fucus vesiculosus, Turbinaria ornata, Saccharina cichorioides, and Undaria pinnatifida. The enzymes included three endo-fucoidanases (EC 3.2.1.-GH 107), FcnA2, Fda1, and Fda2, and two unclassified endo-fucoglucuronomannan lyases, FdlA and FdlB. The oligosaccharide product profiles were assessed by carbohydrate-polyacrylamide gel electrophoresis and size exclusion chromatography. The recombinant enzymes FcnA2, Fda1, and Fda2 were unstable but were stabilised by truncation of the C-terminal end (removing up to 40% of the enzyme sequence). All five enzymes catalysed degradation of fucoidans containing α(1→4)-linked l-fucosyls. Fda2 also degraded S. cichorioides and U. pinnatifida fucoidans that have α(1→3)-linked l-fucosyls in their backbone. In the stabilised form, Fda1 also cleaved α(1→3) bonds. For the first time, we also show that several enzymes catalyse degradation of S. mcclurei galactofucan-fucoidan, known to contain α(1→4) and α(1→3) linked l-fucosyls and galactosyl-β(1→3) bonds in the backbone. These data enhance our understanding of fucoidan degrading enzymes and their substrate preferences and may assist development of enzyme-assisted production of defined fuco-oligosaccharides from fucoidan substrates.
机译:来自棕色大型藻类的藻葡聚糖具有有益的生物医学特性,但用作药物产品需要均质的寡聚产物。在这项研究中,评估了五个重组微生物岩藻依聚糖降解酶对褐藻藻岩藻类的作用:海藻(Sargassum mcclurei),岩藻(Fusus evanescens),岩藻(Fuscus vesiculosus),Turbinaria ornata,糖衣藻(Saccharina cichorioides)和裙带菜(Undaria pinnatifida)。这些酶包括三种内切葡糖苷酶(EC 3.2.1.-GH 107),FcnA2,Fda1和Fda2,以及两种未分类的内切葡糖醛糖醛酸甘露聚糖酶,FdlA和FdlB。通过碳水化合物-聚丙烯酰胺凝胶电泳和尺寸排阻色谱法评估寡糖产物概况。重组酶FcnA2,Fda1和Fda2不稳定,但通过截短C末端(最多去除40%的酶序列)而稳定。所有这五种酶都催化具有α(1→4)连接的1-岩藻糖基的岩藻依聚糖的降解。 Fda2还降解了在其主链中具有α(1→3)连接的1-岩藻糖基的S. cichorioides和U. pinnatifida岩藻依聚糖。在稳定形式下,Fda1也裂解α(1→3)键。我们还首次显示了几种酶催化链球菌半乳链烷葡聚糖的降解,已知它们含有α(1→4)和α(1→3)连接的1-岩藻糖基和半乳糖基-β(1→3)。骨干键。这些数据增强了我们对岩藻依聚糖降解酶及其底物偏好的理解,并可能有助于从岩藻依聚糖底物中酶促生产确定的岩藻糖寡糖。

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