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Construction of Escherichia coli strains with chromosomally integrated expression cassettes for the synthesis of 2′-fucosyllactose

机译:具有染色体整合表达盒的大肠杆菌菌株的构建,用于合成2'-岩藻糖半乳糖

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Background The trisaccharide 2′-fucosyllactose (2′-FL) is one of the most abundant oligosaccharides found in human milk. Due to its prebiotic and anti-infective properties, 2′-FL is discussed as nutritional additive for infant formula. Besides chemical synthesis and extraction from human milk, 2′-FL can be produced enzymatically in vitro and in vivo. The most promising approach for a large-scale formation of 2′-FL is the whole cell biosynthesis in Escherichia coli by intracellular synthesis of GDP-L-fucose and subsequent fucosylation of lactose with an appropriate α1,2-fucosyltransferase. Even though whole cell approaches have been demonstrated for the synthesis of 2′-FL, further improvements of the engineered E. coli host are required to increase product yields. Furthermore, an antibiotic-free method of whole cell synthesis of 2′-FL is desirable to simplify product purification and to avoid traces of antibiotics in a product with nutritional purpose. Results Here we report the construction of the first selection marker-free E. coli strain that produces 2′-FL from lactose and glycerol. To construct this strain, recombinant genes of the de novo synthesis pathway for GDP-L-fucose as well as the gene for the H. pylori fucosyltransferase futC were integrated into the chromosome of E. coli JM109 by using the λ-Red recombineering technique. Strains carrying additional copies of the futC gene and/or the gene fkp (from Bacteroides fragilis) for an additional salvage pathway for GDP-L-fucose production were used and shown to further improve production of 2′-FL in shake flask experiments. An increase of the intracellular GDP-L-fucose concentration by expression of fkp gene as well as an additional copy of the futC gene lead to an enhanced formation of 2′-FL. Using an improved production strain, feasibility of large scale 2′-FL production was demonstrated in an antibiotic-free fed-batch fermentation (13 l) with a final 2′-FL concentration of 20.28?±?0.83 g l-1 and a space-time-yield of 0.57 g l-1 h-1. Conclusions By chromosomal integration of recombinant genes, altering the copy number of these genes and analysis of 2′-FL and intracellular GDP-L-fucose levels, we were able to construct and improve the first selection marker-free E. coli strain which is capable to produce 2′-FL without the use of expression plasmids. Analysis of intracellular GDP-L-fucose levels identified the de novo synthesis pathway of GDP-L-fucose as one bottleneck in 2′-FL production. In antibiotic-free fed-batch fermentation with an improved strain, scale-up of 2′-FL could be demonstrated.
机译:背景技术三糖2 '-岩藻糖乳糖(2 ' -FL)是人乳中发现的最丰富的低聚糖之一。由于其益生元和抗感染特性,人们讨论了2 ' -FL作为婴儿配方食品的营养添加剂。除了化学合成和从人乳中提取外,2 ' -FL还可在体内和体外酶促生产。大规模形成2 ' -FL的最有前途的方法是通过细胞内合成GDP-L-岩藻糖并随后用适当的α1,2进行乳糖岩藻糖基化来在大肠杆菌中进行全细胞生物合成-岩藻糖基转移酶。即使已经证明了全细胞合成2 ' -FL的方法,仍需要对工程化大肠杆菌宿主进行进一步改良以提高产品产量。此外,需要一种无抗生素的2 ' -FL全细胞合成方法,以简化产品纯化并避免具有营养目的的产品中残留抗生素。结果在此我们报道了第一株无选择标记的大肠杆菌菌株的构建,该菌株从乳糖和甘油产生2 ' -FL。为了构建该菌株,使用λ-Red重组技术将GDP-L-岩藻糖的从头合成途径的重组基因以及幽门螺杆菌岩藻糖基转移酶futC的基因整合到大肠杆菌JM109的染色体中。使用了带有额外拷贝的futC基因和/或fkp基因(来自脆弱拟杆菌)的菌株,用于GDP-L-岩藻糖生产的额外挽救途径,并显示可进一步提高2 '- FL在摇瓶实验中。通过表达fkp基因增加细胞内GDP-L-岩藻糖浓度以及增加拷贝的futC基因,导致2 ' -FL的形成增强。使用改良的生产菌株,在无抗生素补料分批发酵(13 l)中证明了大规模生产2 ' -FL的可行性,最终2 '- FL浓度为20.28±±0.83 gl -1 ,时空产量为0.57 gl -1 h -1 。结论通过重组基因的染色体整合,改变这些基因的拷贝数并分析2 ' -FL和细胞内GDP-L-岩藻糖水平,我们能够构建和改善第一个选择标记-无需表达质粒即可产生2 ' -FL的游离大肠杆菌菌株。通过对细胞内GDP-L-岩藻糖水平的分析,确定了GDP-L-岩藻糖的从头合成途径是2 ' -FL生产的瓶颈。在无毒的分批补料分批发酵中,可以证明2 ' -FL的放大。

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