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Enhancement of tacrolimus productivity in Streptomyces tsukubaensis by the use of novel precursors for biosynthesis

机译:通过使用新型前体生物合成提高筑波链霉菌中他克莫司的生产力

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摘要

In this report the optimization of biosynthesis of tacrolimus, the immunosupressant widely used in transplantology and dermatology was described. The enhancement of the productivity of Streptomyces tsukubaensis strain was achieved by development of new precursors of tacrolimus biosynthesis, which should allow to reduce the costs of the process. The enrichment of the fermentation medium in pyridine-2-carboxylic acid (picolinic acid), piperidine-2-carboxylic acid (pipecolic acid), pyridine-3-carboxylic acid (nicotinic acid) or pyridine-3-carboxylic acid amide (nicotinamide) caused significant growth of the productivity of tacrolimus: 7-fold, 6-fold, 3-fold and 5-fold, respectively. The optimum concentration of the precursors in medium was 0.0025-0.005%. The investigation of the kinetics of tacrolimus biosynthesis together with the analysis of the impact of tested compounds on the culture growth and NAD (nicotinamide adenine dinucleotide) concentration in S. tsukubaensis cells enables to put forward a hypothesis concerning the mechanism of action of tested culture medium additives. The compounds active as tacrolimus precursors (pipecolic and picolinic acids) are more effective than these active mainly as the growth promoters (nicotinamide and nicotinic acid). Nicotinamide and nicotinic acid - vitamin B3 components - promote S. tsukubaensis growth most probably due to the stimulation of NAD/NADP biosynthesis.
机译:本报告描述了他克莫司的生物合成的优化,他克莫司是广泛用于移植和皮肤病学的免疫抑制剂。通过开发他克莫司生物合成的新前体,可以提高tsukubaensis链霉菌菌株的生产力,这应该可以降低该过程的成本。在吡啶-2-羧酸(吡啶甲酸),哌啶-2-羧酸(哌酸),吡啶-3-羧酸(烟酸)或吡啶-3-羧酸酰胺(烟酰胺)中发酵培养基的富集导致他克莫司生产力的显着增长:分别为7倍,6倍,3倍和5倍。介质中前体的最佳浓度为0.0025-0.005%。他克莫司生物合成动力学的研究,以及受试化合物对筑波链球菌培养物生长和NAD(烟酰胺腺嘌呤二核苷酸)浓度的影响分析,可以提出有关受试培养基作用机理的假设添加剂。具有他克莫司前体活性的化合物(胡椒酸和吡啶甲酸)比这些主要作为生长促进剂的活性化合物(烟酰胺和烟酸)更有效。烟酰胺和烟酸-维生素B3成分-最有可能由于刺激NAD / NADP生物合成而促进了tsukubaensis的生长。

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