首页> 外文期刊>Journal of Biotechnology >Improved 1,3-propanediol production by engineering the 2,3-butanediol and formic acid pathways in integrative recombinant Klebsiella pneumoniae
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Improved 1,3-propanediol production by engineering the 2,3-butanediol and formic acid pathways in integrative recombinant Klebsiella pneumoniae

机译:通过工程改造重组肺炎克雷伯氏菌中的2,3-丁二醇和甲酸途径来改善1,3-丙二醇的生产

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In the biotechnological process, insufficient cofactor NADH and multiple by-products restrain the final titer of 1,3-propanediol (1,3-PD). In this study, 1,3-PD production was improved by engineering the 2,3-butanediol (2,3-BD) and formic acid pathways in integrative recombinant Klebsiella pneumoniae. The formation of 2,3-BD is catalysed by acetoin reductase (AR). An inactivation mutation of the AR in K. pneumoniae CF was generated by insertion of a formate dehydrogenase gene. Inactivation of AR and expression of formate dehydrogenase reduced 2,3-BD formation and improved 1,3-PD production. Fermentation results revealed that intracellular metabolic flux was redistributed pronouncedly. The yield of 1,3-PD reached 0.74 mol/mol glycerol in flask fermentation, which is higher than the theoretical yield. In 5 L fed-batch fermentation, the final titer and 1,3-PD yield of the K. pneumoniae CF strain reached 72.2 g/L and 0.569 mol/mol, respectively, which were 15.9% and 21.7% higher than those of the wild-type strain. The titers of 2,3-BD and formic acid decreased by 52.2% and 73.4%, respectively. By decreasing the concentration of all nonvolatile by-products and by increasing the availability of NADH, this study demonstrates an important strategy in the metabolic engineering of 1,3-PD production by integrative recombinant hosts
机译:在生物技术过程中,辅酶NADH不足和多种副产物限制了1,3-丙二醇(1,3-PD)的最终效价。在这项研究中,通过工程改造整合重组肺炎克雷伯菌中的2,3-丁二醇(2,3-BD)和甲酸途径,提高了1,3-PD的产量。 2,3-BD的形成是由乙酰还原酶(AR)催化的。肺炎克雷伯菌CF中AR的失活突变是通过插入甲酸脱氢酶基因产生的。 AR的失活和甲酸脱氢酶的表达减少了2,3-BD的形成并改善了1,3-PD的产生。发酵结果表明,细胞内的代谢通量明显重新分布。烧瓶发酵中1,3-PD的甘油产量达到0.74 mol / mol,高于理论产量。在5 L分批补料发酵中,肺炎克雷伯菌CF菌株的最终滴度和1,3-PD产量分别达到72.2 g / L和0.569 mol / mol,分别比其高15.9%和21.7%。野生型菌株。 2,3-BD和甲酸的滴度分别降低了52.2%和73.4%。通过降低所有非挥发性副产物的浓度并增加NADH的利用率,本研究证明了整合重组宿主生产1,3-PD的代谢工程中的重要策略

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