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Pathway Construction in Corynebacterium glutamicum and Strain Engineering To Produce Rare Sugars from Glycerol

机译:谷氨酸棒状杆菌的途径构建和用甘油生产稀糖的菌株工程设计

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摘要

Rare sugars are valuable natural products widely used in pharmaceutical and food industries. In this study, we expected to synthesize rare ketoses from abundant glycerol using dihydroxyacetone phosphate (DHAP)-dependent aldolases. First, a new glycerol assimilation pathway was constructed to synthesize DHAP. The enzymes which convert glycerol to 3-hydroxypropionaldehyde and L-glyceraldehyde were selected, and their corresponding aldehyde synthesis pathways were constructed in vivo. Four aldol pathways based on different aldolases and phosphorylase were gathered. Next, three pathways were assembled and the resulting strains synthesized 5-deoxypsicose, 5-deoxysorbose, and 5-deoxyfructose from glucose and glycerol and produce L-fructose, L-tagatose, L-sorbose, and L-psicose with glycerol as the only carbon source. To achieve higher product titer and yield, the recombinant strains were further engineered and fermentation conditions were optimized. Fed-batch culture of engineered strains obtained 38.1 g/L 5-deoxypsicose with a yield of 0.91 +/- 0.04 mol product per mol of glycerol and synthesized 20.8 g/L L-fructose, 10.3 g/L L-tagatose, 1.2 g/L L-sorbose, and 0.95 g/L L-psicose.
机译:稀有糖是宝贵的天然产物,广泛用于制药和食品工业。在这项研究中,我们希望使用依赖磷酸二羟基丙酮(DHAP)的醛缩酶从丰富的甘油中合成稀有的酮糖。首先,构建新的甘油同化途径以合成DHAP。选择将甘油转化为3-羟基丙醛和L-甘油醛的酶,并在体内构建其相应的醛合成途径。收集了基于不同的醛缩酶和磷酸化酶的四种醛缩途径。接下来,组装了三个途径,所得菌株从葡萄糖和甘油合成了5-脱氧果糖,5-脱氧山梨糖和5-脱氧果糖,并产生了L-果糖,L-塔格糖,L-山梨糖和L-果胶,其中甘油是唯一的碳源。为了获得更高的产品滴度和产率,进一步改造了重组菌株并优化了发酵条件。工程菌株的分批补料培养获得了38.1 g / L 5-脱氧蔗糖,每摩尔甘油产量为0.91 +/- 0.04 mol产物,合成的20.8 g / L L-果糖,10.3 g / L L-塔格糖,1.2 g / L L-山梨糖和0.95 g / L L-山梨糖。

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