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Food-Like Growth Conditions Support Production of Active Vitamin B12 by Propionibacterium freudenreichii 2067 without DMBI, the Lower Ligand Base,or Cobalt Supplementation

机译:类似于食物的生长条件可支持不添加DMBI,低配体碱或钴补充的弗氏丙酸杆菌2067生产活性维生素B12

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摘要

Propionibacterium freudenreichii is a traditional dairy bacterium and a producer of short chain fatty acids (propionic and acetic acids) as well as vitamin B12. In food applications, it is a promising organism for in situ fortification with B12 vitamin since it is generally recognized as safe (GRAS) and it is able to synthesize biologically active form of the vitamin. In the present study, vitamin B12 and pseudovitamin biosynthesis by P. freudenreichii was monitored by UHPLC as a function of growth in food-like conditions using a medium mimicking cheese environment, without cobalt or 5,6-dimethylbenzimidazole (DMBI) supplementation. Parallel growth experiments were performed in industrial-type medium known to support the biosynthesis of vitamin B12. The production of other key metabolites in the two media were determined by HPLC, while the global protein production was compared by gel-based proteomics to assess the effect of growth conditions on the physiological status of the strain and on the synthesis of different forms of vitamin. The results revealed distinct protein andmetabolite production, which reflected the growth conditions and the potential of P. freudenreichii for synthesizing nutritionally relevant amounts of active vitamin B12 regardless of the metabolic state of the cells.
机译:freudenreichii丙酸杆菌是一种传统的乳制品细菌,生产短链脂肪酸(丙酸和乙酸)以及维生素B12。在食品应用中,它是用B12维生素原位强化的一种有前途的生物,因为它通常被认为是安全的(GRAS),并且能够合成维生素的生物活性形式。在本研究中,在不添加钴或5,6-二甲基苯并咪唑(DMBI)的情况下,使用类似奶酪的培养基,通过UHPLC在食品状条件下监测了弗氏疟原虫的维生素B12和假维生素的生物合成。在已知支持维生素B12生物合成的工业类型培养基中进行平行生长实验。 HPLC测定了两种培养基中其他关键代谢产物的产生,而凝胶凝胶蛋白质组学比较了总蛋白质的产生,以评估生长条件对菌株生理状态和不同形式维生素合成的影响。 。结果显示出不同的蛋白质和代谢产物产生,这反映了弗氏疟原虫的生长条件和合成营养相关量的活性维生素B12的潜力,而与细胞的代谢状态无关。

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