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In silico aided metabolic engineering of Streptomyces roseosporus for daptomycin yield improvement

机译:玫瑰孢链霉菌的计算机辅助代谢工程技术,用于达托霉素的产量提高

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摘要

In silico metabolic network models are valuable tools for strain improvement with desired properties. In this work, based on the comparisons of each pathway flux under two different objective functions for the reconstructed metabolic network of Streptomyces roseosporus, three potential targets of zwf2 (code for glucose-6-phosphate hydrogenase), dptI (code for α-ketoglutarate methyltransferase), and dptJ (code for tryptophan oxygenase) were identified and selected for the genetic modifications. Overexpression of zwf2, dptI, and dptJ genes increased the daptomycin concentration up to 473.2, 452.5, and 489.1 mg/L, respectively. Furthermore, co-overexpression of three genes in series resulted in a 34.4% higher daptomycin concentration compared with the parental strain, which ascribed to the synergistic effect of the enzymes responsible for daptomycin biosynthesis. Finally, the engineered strain enhanced the yield of daptomycin up to 581.5 mg/L in the fed-batch culture, which was approximately 43.2% higher than that of the parental strain. These results demonstrated that the metabolic network based on in silico prediction would be accurate, reasonable, and practical for target gene identification and strain improvement.
机译:计算机代谢网络模型是用于具有所需特性的菌株改良的有价值的工具。在这项工作中,基于对玫瑰链霉菌重组代谢网络,两个潜在目标zwf2(6-磷酸葡萄糖磷酸酶的代码),dptI(α-酮戊二酸甲基转移酶的代码)的两个不同目标函数下每个路径通量的比较, )和dptJ(色氨酸加氧酶的代码)被鉴定并选择用于遗传修饰。 zwf2,dptI和dptJ基因的过表达将达托霉素的浓度分别提高到473.2、452.5和489.1 mg / L。此外,与亲本菌株相比,三个基因序列的共同过表达导致达托霉素浓度高34.4%,这归因于负责达托霉素生物合成的酶的协同作用。最后,该工程菌株在补料分批培养中将达托霉素的产量提高至581.5 mg / L,比亲本菌株高约43.2%。这些结果表明,基于计算机模拟的代谢网络对于目标基因的鉴定和菌株的改良将是准确,合理和实用的。

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