Barea-Alvarez Montserrat, Benito Maria Teresa, Olano Agustín, Jimeno Maria Luisa, Moreno F Javier
Departamento Bioactividad y Análisis de Alimentos, Instituto de Investigación en Ciencias de la Alimentación, CIAL (CSIC-UAM), CEI (UAM+CSIC) , c/Nicolás Cabrera 9, 28049 Madrid, Spain.
J Agric Food Chem. 2014 Sep 17;62(37):9137-44. doi: 10.1021/jf5033735. Epub 2014 Sep 8.
This paper reports the efficient enzymatic synthesis of a homologous series of isomaltulose-derived oligosaccharides with degrees of polymerization ranging from 3 to 9 through the transglucosylation reaction using a dextransucrase from Leuconostoc mesenteroides B-512F. The total oligosaccharide yield obtained under optimal conditions was 41-42% (in weight with respect to the initial amount of isomaltulose) after 24-48 h of reaction. Nuclear magnetic resonance (NMR) structural characterization indicated that dextransucrase specifically transferred glucose moieties of sucrose to the C-6 of the nonreducing glucose residue of isomaltulose. Likewise, monitoring the progression of the content of each individual oligosaccharide indicated that oligosaccharide acceptor products of low molecular weight acted in turn as acceptors for further transglucosylation to yield oligosaccharides of a higher degree of polymerization. The produced isomaltulose-derived oligosaccharides can be considered as isomalto-oligosaccharides (IMOs) because they are linked by only α-(1→6) bonds. In addition, having isomaltulose as the core structure, these IMO-like structures could possess appealing bioactive properties that could find potential applications as functional food ingredients.
本文报道了利用来自肠系膜明串珠菌B - 512F的葡聚糖蔗糖酶,通过转糖基化反应高效酶促合成一系列聚合度为3至9的异麦芽酮糖衍生寡糖。在最佳条件下反应24 - 48小时后,寡糖的总产率为41 - 42%(相对于异麦芽酮糖的初始量,以重量计)。核磁共振(NMR)结构表征表明,葡聚糖蔗糖酶将蔗糖的葡萄糖部分特异性转移至异麦芽酮糖非还原葡萄糖残基的C - 6位。同样,监测每种寡糖含量的变化表明,低分子量的寡糖受体产物依次作为受体进行进一步的转糖基化反应,从而生成更高聚合度的寡糖。所产生的异麦芽酮糖衍生寡糖可被视为异麦芽寡糖(IMOs),因为它们仅通过α-(1→6)键相连。此外,以异麦芽酮糖为核心结构,这些类IMOs结构可能具有吸引人的生物活性特性,有望作为功能性食品成分得到潜在应用。