Kothari D, Goyal A
Department of Biotechnology, Indian Institute of Technology Guwahati, Guwahati, Assam, 781039, India.
Biochemistry (Mosc). 2013 Oct;78(10):1164-70. doi: 10.1134/S0006297913100118.
Leuconostoc mesenteroides NRRL B-1426 dextransucrase synthesized a high molecular mass dextran (>2 × 10(6) Da) with ~85.5% α-(1→6) linear and ~14.5% α-(1→3) branched linkages. This high molecular mass dextran containing branched α-(1→3) linkages can be readily hydrolyzed for the production of enzyme-resistant isomalto-oligosaccharides. The acceptor specificity of dextransucrase for the transglycosylation reaction was studied using sixteen different acceptors. Among the sixteen acceptors used, isomaltose was found to be the best, having 89% efficiency followed by gentiobiose (64%), glucose (30%), cellobiose (25%), lactose (22.5%), melibiose (17%), and trehalose (2.3%) with reference to maltose, a known best acceptor. The β-linked disaccharide, gentiobiose, showed significant efficiency for oligosaccharide production that can be used as a potential prebiotic.
肠膜明串珠菌NRRL B - 1426葡聚糖蔗糖酶合成了一种高分子量葡聚糖(>2×10⁶ Da),其α-(1→6)线性连接约占85.5%,α-(1→3)分支连接约占14.5%。这种含有分支α-(1→3)连接的高分子量葡聚糖可易于水解以生产抗酶解异麦芽寡糖。使用16种不同的受体研究了葡聚糖蔗糖酶对转糖基化反应的受体特异性。在所使用的16种受体中,发现异麦芽糖是最佳受体,效率为89%,其次是龙胆二糖(64%)、葡萄糖(30%)、纤维二糖(25%)、乳糖(22.5%)、蜜二糖(17%)和海藻糖(2.3%),以已知最佳受体麦芽糖作为参照。β-连接的二糖龙胆二糖在低聚糖生产中显示出显著效率,可作为潜在的益生元。