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Trends in bacterial trehalose metabolism and significant nodes of metabolic pathway in the direction of trehalose accumulation.

机译:细菌海藻糖代谢趋势以及在海藻糖积累方向的代谢途径的重要节点。

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摘要

The current knowledge of trehalose biosynthesis under stress conditions is incomplete and needs further research. Since trehalose finds industrial and pharmaceutical applications, enhanced accumulation of trehalose in bacteria seems advantageous for commercial production. Moreover, physiological role of trehalose is a key to generate stress resistant bacteria by metabolic engineering. Although trehalose biosynthesis requires few metabolites and enzyme reactions, it appears to have a more complex metabolic regulation. Trehalose biosynthesis in bacteria is known through three pathways - OtsAB, TreYZ and TreS. The interconnections of in vivo synthesis of trehalose, glycogen or maltose were most interesting to investigate in recent years. Further, enzymes at different nodes (glucose-6-P, glucose-1-P and NDP-glucose) of metabolic pathways influence enhancement of trehalose accumulation. Most of the study of trehalose biosynthesis was explored in medically significant Mycobacterium, research model Escherichia coli, industrially applicable Corynebacterium and food and probiotic interest Propionibacterium freudenreichii. Therefore, the present review dealt with the trehalose metabolism in these bacteria. In addition, an effort was made to recognize how enzymes at different nodes of metabolic pathway can influence trehalose accumulation.
机译:目前在应激条件下海藻糖生物合成的知识尚不完善,需要进一步研究。由于海藻糖发现了工业和制药应用,因此海藻糖在细菌中的积累增加似乎有利于商业生产。此外,海藻糖的生理作用是通过代谢工程产生抗逆细菌的关键。尽管海藻糖的生物合成几乎不需要代谢物和酶反应,但似乎具有更复杂的代谢调节。细菌中的海藻糖生物合成是通过三种途径已知的-OtsAB,TreYZ和TreS。近年来,海藻糖,糖原或麦芽糖的体内合成的相互联系是最令人感兴趣的研究。此外,在代谢途径的不同节点(葡萄糖6-P,葡萄糖-1-P和NDP-葡萄糖)处的酶影响海藻糖积累的增强。海藻糖生物合成的大部分研究都在具有医学意义的分枝杆菌,大肠杆菌研究模型,工业上适用的棒杆菌以及对食品和益生菌感兴趣的弗氏丙酸杆菌进行了探索。因此,本综述涉及这些细菌中的海藻糖代谢。此外,人们努力认识到代谢途径不同节点的酶如何影响海藻糖的积累。

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