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Overproduction of Heterologous Mannitol 1-Phosphatase: a Key Factor for Engineering Mannitol Production by Lactococcus lactis

机译:异源甘露醇1-磷酸酶的过量生产:乳酸乳球菌工程甘露醇生产的关键因素。

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摘要

To achieve high mannitol production by Lactococcus lactis, the mannitol 1-phosphatase gene of Eimeria tenella and the mannitol 1-phosphate dehydrogenase gene mtlD of Lactobacillus plantarum were cloned in the nisin-dependent L. lactis NICE overexpression system. As predicted by a kinetic L. lactis glycolysis model, increase in mannitol 1-phosphate dehydrogenase and mannitol 1-phosphatase activities resulted in increased mannitol production. Overexpression of both genes in growing cells resulted in glucose-mannitol conversions of 11, 21, and 27% by the L. lactis parental strain, a strain with reduced phosphofructokinase activity, and a lactate dehydrogenase-deficient strain, respectively. Improved induction conditions and increased substrate concentrations resulted in an even higher glucose-to-mannitol conversion of 50% by the lactate dehydrogenase-deficient L. lactis strain, close to the theoretical mannitol yield of 67%. Moreover, a clear correlation between mannitol 1-phosphatase activity and mannitol production was shown, demonstrating the usefulness of this metabolic engineering approach.
机译:为了实现乳酸乳球菌的高甘露醇生产,将艾美球虫的甘露醇1-磷酸酶基因和植物乳杆菌的甘露醇1-磷酸脱氢酶基因mtlD克隆在依赖于乳链菌肽的乳酸乳球菌NICE过表达系统中。如动力学乳酸菌糖酵解模型所预测,甘露醇1-磷酸脱氢酶和甘露醇1-磷酸酶活性的增加导致甘露醇产量的增加。这两个基因在生长细胞中的过表达导致乳酸乳球菌亲本菌株,磷酸果糖激酶活性降低的菌株和乳酸脱氢酶缺陷型菌株的葡萄糖-甘露醇转化率分别为11%,21%和27%。改进的诱导条件和增加的底物浓度导致乳酸脱氢酶缺陷型乳酸乳球菌的葡萄糖向甘露醇的转化率更高,达到50%,接近理论甘露醇产率的67%。此外,显示了甘露醇1-磷酸酶活性与甘露醇生产之间的明显相关性,证明了这种代谢工程方法的有用性。

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