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Increased Production of Folate by Metabolic Engineering of Lactococcus lactis

机译:乳酸乳球菌的代谢工程提高了叶酸的产量

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摘要

The dairy starter bacterium Lactococcus lactis is able to synthesize folate and accumulates large amounts of folate, predominantly in the polyglutamyl form. Only small amounts of the produced folate are released in the extracellular medium. Five genes involved in folate biosynthesis were identified in a folate gene cluster in L. lactis MG1363: folA, folB, folKE, folP, and folC. The gene folKE encodes the biprotein 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine pyrophosphokinase and GTP cyclohydrolase I. The overexpression of folKE in L. lactis was found to increase the extracellular folate production almost 10-fold, while the total folate production increased almost 3-fold. The controlled combined overexpression of folKE and folC, encoding polyglutamyl folate synthetase, increased the retention of folate in the cell. The cloning and overexpression of folA, encoding dihydrofolate reductase, decreased the folate production twofold, suggesting a feedback inhibition of reduced folates on folate biosynthesis.
机译:乳制品发酵细菌乳酸乳球菌能够合成叶酸并积累大量叶酸,主要以聚谷氨酰形式存在。仅少量产生的叶酸在细胞外培养基中释放。在乳酸乳杆菌MG1363的叶酸基因簇中鉴定了与叶酸生物合成有关的五个基因:folA,folB,folKE,folP和folC。基因folKE编码双蛋白2-氨基-4-羟基-6-羟基甲基二氢蝶啶焦磷酸激酶和GTP环水解酶I。发现乳酸杆菌中的folKE过表达使细胞外叶酸产量增加了近10倍,而总叶酸产量却增加了几乎是三倍。编码聚谷氨酰胺叶酸合成酶的folKE和folC的受控联合过表达增加了叶酸在细胞中的保留。编码二氢叶酸还原酶的folA的克隆和过表达使叶酸产量降低了两倍,表明叶酸生物合成过程中叶酸减少的反馈抑制作用。

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