Pham HienT T, Dijkhuizen Lubbert, van Leeuwen Sander S
Microbial Physiology, Groningen Biomolecular Sciences and Biotechnology Institute (GBB), University of Groningen, Nijenborgh 7, 9747 AG, Groningen, the Netherlands.
Microbial Physiology, Groningen Biomolecular Sciences and Biotechnology Institute (GBB), University of Groningen, Nijenborgh 7, 9747 AG, Groningen, the Netherlands; CarbExplore Research BV, Zernikepark 12, 9747 AN, Groningen, the Netherlands.
Carbohydr Res. 2018 Dec;470:57-63. doi: 10.1016/j.carres.2018.10.003. Epub 2018 Oct 22.
β-Galacto-oligosaccharides (GOS) are used commercially in infant nutrition, aiming to functionally replace human milk oligosaccharides (hMOS). Glucansucrases Gtf180-ΔN and GtfA-ΔN of Lactobacillus reuteri strains convert sucrose into α-glucans with (α1→6)/(α1→3) and (α1→4)/(α1→6) glucosidic linkages, respectively. Previously we reported that both glucansucrases glucosylate lactose, producing a minimum of 5 compounds (degree of polymerization 3-4) (GL34 mixture) with (α1→2/3/4) linkages. This GL34 mixture exhibited growth stimulatory effects on various probiotic bacteria. Aiming to obtain additional compounds mimicking hMOS in structure and function, we here studied glucosylation of 3 commercially available galactosyl-lactose GOS compounds. Both Gtf180-ΔN and GtfA-ΔN were unable to use 3'-galactosyl-lactose (β3'-GL), but used sucrose to add a single glucose moiety to 4'-galactosyl-lactose (β4'-GL) and 6'-galactosyl-lactose (β6'-GL). β6'-GL was elongated at its reducing glucosyl unit with an (α1→2)-linked moiety and at its non-reducing end with an (α1→4) linked moiety; β4'-GL was only elongated at its reducing end with an (α1→2) linked moiety. Glucansucrases Gtf180-ΔN and GtfA-ΔN thus can be used to produce galactosyl-lactose-derived oligosaccharides containing (α1→2) and (α→4) glucosidic linkages, potentially with valuable bioactive (prebiotic) properties.
β-半乳糖寡糖(GOS)在婴儿营养领域有商业应用,旨在功能性替代人乳寡糖(hMOS)。罗伊氏乳杆菌菌株的葡聚糖蔗糖酶Gtf180-ΔN和GtfA-ΔN分别将蔗糖转化为具有(α1→6)/(α1→3)和(α1→4)/(α1→6)糖苷键的α-葡聚糖。此前我们报道,这两种葡聚糖蔗糖酶都会使乳糖糖基化,产生至少5种具有(α1→2/3/4)键的化合物(聚合度为3 - 4)(GL34混合物)。这种GL34混合物对多种益生菌具有生长刺激作用。为了获得在结构和功能上模拟hMOS的其他化合物,我们在此研究了3种市售半乳糖基乳糖GOS化合物的糖基化反应。Gtf180-ΔN和GtfA-ΔN均不能利用3'-半乳糖基乳糖(β3'-GL),但能利用蔗糖将单个葡萄糖部分添加到4'-半乳糖基乳糖(β4'-GL)和6'-半乳糖基乳糖(β6'-GL)上。β6'-GL在其还原性葡萄糖基单元上连接一个(α1→2)连接的部分,在其非还原性末端连接一个(α1→4)连接的部分;β4'-GL仅在其还原性末端连接一个(α1→2)连接的部分。因此,葡聚糖蔗糖酶Gtf180-ΔN和GtfA-ΔN可用于生产含有(α1→2)和(α→4)糖苷键的半乳糖基乳糖衍生寡糖,可能具有有价值的生物活性(益生元)特性。