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The Onset of Tacrolimus Biosynthesis in Streptomyces tsukubaensis Is Dependent on the Intracellular Redox Status

机译:Treptomyces Tsukubaensis中的巨虫生物合成的发病依赖于细胞内氧化还原状态

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摘要

The oxidative stress response is a key mechanism that microorganisms have to adapt to changeling environmental conditions. Adaptation is achieved by a fine-tuned molecular response that extends its influence to primary and secondary metabolism. In the past, the role of the intracellular redox status in the biosynthesis of tacrolimus in Streptomyces tsukubaensis has been briefly acknowledged. Here, we investigate the impact of the oxidative stress response on tacrolimus biosynthesis in S. tsukubaensis. Physiological characterization of S. tsukubaensis showed that the onset of tacrolimus biosynthesis coincided with the induction of catalase activity. In addition, tacrolimus displays antioxidant properties and thus a controlled redox environment would be beneficial for its biosynthesis. In addition, S. tsukubaensis ∆ahpC strain, a strain defective in the H2O2-scavenging enzyme AhpC, showed increased production of tacrolimus. Proteomic and transcriptomic studies revealed that the tacrolimus over-production phenotype was correlated with a metabolic rewiring leading to increased availability of tacrolimus biosynthetic precursors. Altogether, our results suggest that the carbon source, mainly used for cell growth, can trigger the production of tacrolimus by modulating the oxidative metabolism to favour a low oxidizing intracellular environment and redirecting the metabolic flux towards the increase availability of biosynthetic precursors.
机译:氧化应激反应是微生物具有适应低能环境条件的关键机制。适应是通过延伸其初级和次级代谢影响的微调分子反应来实现的。在过去,在细胞内的氧化还原状态的他克莫司在链霉菌tsukubaensis生物合成的作用已经简要承认。在这里,我们调查S. tsukubaensis他克莫司生物合成的氧化应激反应的影响。 S. tsukubaensis的生理特征表明,他克莫司生物合成的开始正好与过氧化氢酶的诱导。此外,他克莫司显示抗氧化性能,因此受控的氧化还原环境将是它的生物合成是有益的。此外,S. tsukubaensisΔahpC应变,在H 2 O 2 - 清除酶的AhpC应变缺陷,表现为增加的产量的他克莫司。蛋白质组学和转录组的研究显示,他克莫司生产过剩表型与代谢重新布线从而增加他克莫司生物合成前体的可用性相关。总之,我们的结果表明,碳源,主要用于细胞生长,可通过调节氧化代谢为有利于低氧化性细胞内环境和重定向朝向生物合成前体的增加的可用性的新陈代谢通量触发生产他克莫司。

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