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In silico prediction of Escherichia coli metabolic engineering capabilities for 1-butanol production

机译:在计算机上预测1-丁醇生产的大肠杆菌代谢工程能力

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In silico metabolic engineering interventions have received renewed attention due to the increase in the number of annotated genomes and the development of several genome-scale metabolic models. Using the retrosynthetic metabolic pathway prediction method, we engineered metabolic strategies for the production of 1-butanol by Escherichia coli using the OptFlux software platform. The metabolic engineering model shows that the insertion of nucleotide sugar dehydrogenase enzyme from Leptothrix cholodnii is predicted to catalyse the production of 1-butanol in E. coli. The growth rate and the secretion profile of the mutant model was retained as the wild-type. The result demonstrates that the proposed engineered strain is capable of substantial butanol production increase when 1-butanol gene (nsdh/b3544) is overexpressed under semi-anaerobic conditions with fixed glucose and oxygen uptake rates of 8 mmol g DW-1 h(-1) and 5 mmol g DW-1 h(-1), respectively. We anticipate that our in silico results would serve as a starting point for novel in vivo metabolic engineering strategies of 1-butanol production in E. coli.
机译:由于注释的基因组数量的增加以及几种基因组规模的代谢模型的发展,计算机代谢工程干预技术受到了新的关注。使用逆合成代谢途径预测方法,我们设计了使用OptFlux软件平台通过大肠杆菌生产1-丁醇的代谢策略。代谢工程模型表明,从拟南芥(Leptothrix cholodnii)插入核苷酸糖脱氢酶有望催化大肠杆菌中1-丁醇的产生。突变体模型的生长速率和分泌概况保留为野生型。结果表明,在半厌氧条件下过表达1-丁醇基因(nsdh / b3544)并固定葡萄糖和氧气摄取率为8 mmol g DW-1 h(-1)时,拟议的工程菌株能够显着提高丁醇产量。 )和5 mmol g DW-1 h(-1)。我们预期我们的计算机模拟结果将作为大肠杆菌中1-丁醇生产的新型体内代谢工程策略的起点。

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