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首页> 外文期刊>Bioprocess and Biosystems Engineering >Dynamic flux balance analysis for microbial conversion of glycerol into 1,3-propanediol by Klebsiella pneumoniae
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Dynamic flux balance analysis for microbial conversion of glycerol into 1,3-propanediol by Klebsiella pneumoniae

机译:肺炎克雷伯菌对甘油微生物转化为1,3-丙二醇的动态通量平衡分析

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摘要

To investigate the relationship between the yield of 1,3-propanediol (1,3-PD) and the flux variation in metabolic pathways of Klebsiella pneumoniae, an optimized calculation method was constructed on basis of dynamic flux balance analysis by combining genome-scale flux balance analysis with a kinetic model of extracellular metabolites. Through optimizing calculations, a more completely expanded metabolic pathway was obtained, which includes the previously reported metabolic pathway and additional three pathways or site: a pentose phosphate pathway (PPP) elicited at the dihydroxyacetone (DHA) node to provide more reducing equivalents; a branch of synthetic amino acids at the 3-phosphoglycerate (3PG) node; and the -ketoglutarate site in the tricarboxylic acid (TCA) cycle leading to anabolic pathways for glutamate and other amino acids. On this basis, the relationships between the dynamic flux distribution of the important nodes in the metabolic pathway and the yield of 1,3-propanediol were analyzed. First, dynamic flux change from DHA to the PPP is positively correlated with the yield. Second, variation in flux in the TCA cycle is also positively correlated with the yield of 1,3-propanediol. In addition, the influence of the feedback loop formed by the cofactor tetrahydrofolate on the flux change of TCA in the amino acid anabolic pathway was examined. These results are of important reference value and have guiding significance for the extension of the glycerol metabolism pathway in K. pneumoniae, the rational transformation of genetic engineering in bacteria, and the optimization of metabolic pathways for industrial production.
机译:为了研究1,3-丙二醇(1,3-PD)的产量与肺炎克雷伯菌的代谢途径通量变化之间的关系,在动态通量平衡分析的基础上,结合基因组规模通量,构建了一种优化的计算方法。细胞外代谢物动力学模型进行平衡分析。通过优化计算,获得了更完全扩展的代谢途径,包括先前报道的代谢途径和另外三个途径或部位:在二羟基丙酮(DHA)节点处引发的戊糖磷酸途径(PPP),以提供更多的还原当量; 3-磷酸​​甘油酸(3PG)节点上的合成氨基酸分支;以及三羧酸(TCA)循环中的-ketoglutarate位点会导致谷氨酸和其他氨基酸的合成代谢途径。在此基础上,分析了代谢途径中重要节点的动态通量分布与1,3-丙二醇收率之间的关系。首先,从DHA到PPP的动态通量变化与产量成正相关。其次,TCA循环中通量的变化也与1,3-丙二醇的收率呈正相关。此外,检查了辅酶四氢叶酸形成的反馈回路对氨基酸合成代谢途径中TCA通量变化的影响。这些结果对肺炎克雷伯菌中甘油代谢途径的延伸,细菌基因工程的合理转化以及工业生产代谢途径的优化具有指导意义。

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