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Enhancing effect of lysine combined with other compounds on cephamycin C production in Streptomyces clavuligerus

机译:赖氨酸与其他化合物的结合对棒状链霉菌中头霉素C产生的影响

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摘要

Background: Lysine plays an important role in Streptomyces clavuligerus metabolism; it takes part in its catabolism, via cadaverine, and in its secondary metabolism, in which lysine is converted via 1-piperideine-6-carboxylate to alpha-aminoadipic acid, a beta-lactam antibiotic precursor. The role of lysine as an enhancer of cephamycin C production, when added to production medium at concentrations above 50 mmol l(-1), has already been reported in the literature, with some studies attributing a positive influence to multifunctional diamines, among other compounds. However, there is a lack of research on the combined effect of these compounds on antibiotic production.Results: Results from experimental design-based tests were used to conduct response surface-based optimization studies in order to investigate the synergistic effect of combining lysine with cadaverine, putrescine, 1,3-diaminopropane, or alpha-aminoadipic acid on cephamycin C volumetric production. Lysine combined with cadaverine influenced production positively, but only at low lysine concentrations. On the whole, higher putrescine concentrations (0.4 g l(-1)) affected negatively cephamycin C volumetric production. In comparison to culture media containing only lysine as additive, combinations of this amino acid with alpha-aminoadipic acid or 1,3-diaminopropane increased cephamycin C production by more than 100%.Conclusion: This study demonstrated that different combinations of lysine with diamines or lysine with alpha-aminoadipic acid engender significant differences with respect to antibiotic volumetric production, with emphasis on the benefits observed for lysine combined with alpha-aminoadipic acid or 1,3-diaminopropane. This increase is explained by mathematical models and demonstrated by means of bioreactor cultivations. Moreover, it is consistent with the positive influence of these compounds on lysine conversion to alpha-aminoadipic acid, a limiting step in cephamycin C production.
机译:背景:赖氨酸在链霉菌的链霉菌代谢中起着重要作用。它通过尸胺参与其分解代谢,并参与其次级代谢,其中赖氨酸通过1-哌啶-6-羧酸盐转化为α-氨基己二酸(一种β-内酰胺抗生素前体)。当以高于50 mmol l(-1)的浓度添加到生产培养基中时,赖氨酸作为头孢霉素C生产的增强剂的作用已有报道,一些研究对多功能二胺以及其他化合物产生了积极影响。然而,关于这些化合物对抗生素产生的联合作用的研究还很缺乏。结果:基于实验设计的试验结果被用于进行基于响应面的优化研究,以研究赖氨酸与尸胺联合的协同作用。 ,腐胺,1,3-二氨基丙烷或α-氨基己二酸对头孢菌素C的产量影响。赖氨酸与尸胺的结合对生产有积极影响,但仅在低赖氨酸浓度下有效。总体而言,较高的腐胺浓度(0.4 g l(-1))对头孢霉素C的容积产生不利影响。与仅含有赖氨酸作为添加剂的培养基相比,此氨基酸与α-氨基己二酸或1,3-二氨基丙烷的组合可使头孢霉素C的产生增加100%以上。结论:这项研究表明,赖氨酸与二胺或二胺的不同组合赖氨酸与α-氨基己二酸在抗生素的批量生产方面存在显着差异,重点在于观察到的赖氨酸与α-氨基己二酸或1,3-二氨基丙烷合用的益处。这种增加通过数学模型进行了解释,并通过生物反应器的培养得以证明。而且,这与这些化合物对赖氨酸向α-氨基己二酸转化的积极影响是一致的,这是头霉素C生产中的限制步骤。

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