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Reconstruction and in silico analysis of an Actinoplanes sp. SE50/110 genome-scale metabolic model for acarbose production

机译:Actinoplanes sp。的重建和计算机分析。 SE50 / 110基因组规模的阿卡波糖生产代谢模型

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摘要

Actinoplanes sp. SE50/110 produces the α-glucosidase inhibitor acarbose, which is used to treat type 2 diabetes mellitus. To obtain a comprehensive understanding of its cellular metabolism, a genome-scale metabolic model of strain SE50/110, iYLW1028, was reconstructed on the bases of the genome annotation, biochemical databases, and extensive literature mining. Model iYLW1028 comprises 1028 genes, 1128 metabolites, and 1219 reactions. One hundred and twenty-two and eighty one genes were essential for cell growth on acarbose synthesis and sucrose media, respectively, and the acarbose biosynthetic pathway in SE50/110 was expounded completely. Based on model predictions, the addition of arginine and histidine to the media increased acarbose production by 78 and 59%, respectively. Additionally, dissolved oxygen has a great effect on acarbose production based on model predictions. Furthermore, genes to be overexpressed for the overproduction of acarbose were identified, and the deletion of treY eliminated the formation of by-product component C. Model iYLW1028 is a useful platform for optimizing and systems metabolic engineering for acarbose production in Actinoplanes sp. SE50/110.
机译:放线飞机sp。 SE50 / 110生产α-葡萄糖苷酶抑制剂阿卡波糖,用于治疗2型糖尿病。为了获得对其细胞代谢的全面了解,在基因组注释,生化数据库和大量文献挖掘的基础上,重建了SE50 / 110菌株iYLW1028的基因组规模代谢模型。 iYLW1028型包含1028个基因,1128个代谢产物和1219个反应。在阿卡波糖合成和蔗糖培养基上,分别有一百二十二和八十一个基因是细胞生长所必需的,并全面阐述了SE50 / 110中阿卡波糖的生物合成途径。根据模型预测,向培养基中添加精氨酸和组氨酸分别可使阿卡波糖的产量增加78%和59%。另外,基于模型预测,溶解氧对阿卡波糖的产生有很大影响。此外,鉴定了过表达阿卡波糖的过量表达的基因,并且删除了treY消除了副产物组分C的形成。iYLW1028型是用于优化和系统代谢工程化放线猕猴桃中阿卡波糖生产的有用平台。 SE50 / 110。

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