Utilisation of an active branching sucrase from Lactobacillus kunkeei AP-37 to produce techno-functional poly-oligosaccharides

右旋蔗糖酶 益生元 蔗糖酶 化学 葡聚糖 低聚糖 支化(高分子化学) 右旋糖酐 麦芽糖酶 多糖 生物化学 甘露糖 肠系膜明串珠菌 有机化学 细菌 生物 乳酸 遗传学
作者
Hümeyra İspirli,Kader Korkmaz,Seda Arıoğlu-Tuncil,Fatih Bozkurt,Osman Sağdıç,Yunus E. Tunçil,Arjan Narbad,Enes Dertli̇
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:236: 123967-123967 被引量:9
标识
DOI:10.1016/j.ijbiomac.2023.123967
摘要

Glucansucrase AP-37 was extracted from the culture supernatant of Lactobacillus kunkeii AP-37 and characteristics of the glucan produced by the active glucansucrase in terms of structural and functional roles were determined in this study. A molecular weight around 300 kDa was observed for glucansucrase AP-37 and its acceptor reactions with maltose, melibiose and mannose were also conducted to unveil the prebiotic potential of the poly-oligosaccharides formed via these reactions. The core structure of glucan AP-37 was determined by 1H and 13C NMR and GC/MS analysis which revealed that glucan AP-37 was a highly branched dextran composing of high levels of (1 → 3)-linked α-d-glucose units with low levels of (1 → 2)-linked α-d-glucose units. The structural features of the glucan formed, demonstrated that glucansucrase AP-37 was an α-(1 → 3) branching sucrase. Dextran AP-37 was further characterised by FTIR analysis and XRD analysis demonstrated its amorphous nature. A fibrous compact morphology was observed for dextran AP-37 with SEM analysis whereas TGA and DSC analysis revealed its high stability as no degradation was observed up to 312 °C. Finally, the prebiotic potential of the dextran AP-37 and the gluco-oligosaccharides produced with the acceptor reaction of α-(1 → 3) branching sucrase AP-37 were determined and promising results were found for the gluco-oligosaccharides to act as prebiotics.
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