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首页> 外文期刊>Biotechnology and Bioengineering >Reconstruction of tricarboxylic acid cycle in Corynebacterium glutamicum with a genome-scale metabolic network model for trans-4-hydroxyproline production
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Reconstruction of tricarboxylic acid cycle in Corynebacterium glutamicum with a genome-scale metabolic network model for trans-4-hydroxyproline production

机译:具有用于反式4-羟脯氨酸生产的基因组 - 级代谢网络模型的棒状氨基氨基甲酸循环的重建

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摘要

trans-4-Hydroxy-l-proline (Hyp) is an abundant component of mammalian collagen and functions as a chiral synthon for the syntheses of anti-inflammatory drugs in the pharmaceutical industry. Proline 4-hydroxylase (P4H) can catalyze the conversion of l-proline to Hyp; however, it is still challenging for the fermentative production of Hyp from glucose using P4H due to the low yield and productivity. Here, we report the metabolic engineering of Corynebacterium glutamicum for the fermentative production of Hyp by reconstructing tricarboxylic acid (TCA) cycle together with heterologously expressing the p4h gene from Dactylosporangium sp. strain RH1. In silico model-based simulation showed that alpha-ketoglutarate was redirected from the TCA cycle toward Hyp synthetic pathway driven by P4H when the carbon flux from succinyl-CoA to succinate descended to zero. The interruption of the TCA cycle by the deletion of sucCD-encoding the succinyl-CoA synthetase (SUCOAS) led to a 60% increase in Hyp production and had no obvious impact on the growth rate. Fine-tuning of plasmid-borne ProB* and P4H abundances led to a significant increase in the yield of Hyp on glucose. The final engineered Hyp-7 strain produced up to 21.72 g/L Hyp with a yield of 0.27 mol/mol (Hyp/glucose) and a volumetric productivity of 0.36 g center dot L-1 center dot hr(-1) in the shake flask fermentation. To our knowledge, this is the highest yield and productivity achieved by microbial fermentation in a glucose-minimal medium for Hyp production. This strategy provides new insights into engineering C. glutamicum by flux coupling for the fermentative production of Hyp and related products.
机译:Trans-4-羟基-L-脯氨酸(哌啶)是哺乳动物胶原蛋白的丰富成分,并用作制药工业中抗炎药合成的手性综合。脯氨酸4-羟化酶(P4H)可催化L-脯氨酸转化为下百下;然而,由于低产量和生产率,使用P4H从葡萄糖发酵生产仍然挑战。在这里,我们通过将三羧酸(TCA)循环与Dayylosangium sp的异果表达P4H基因一起重建三羧酸(TCA)循环来报告谷氨酸谷氨酸的代谢工程。 rh1。在基于硅模型的模拟中,当琥珀酰基-CoA碳通量从琥珀酰-COA碳通酸酯下降到零时,从TCA循环中从TCA循环中重定向α-酮戊酸甲酸甲酸甲酸甲酸甲酸酮酸甲酸酮酸盐术。通过删除琥珀酰基-CoA合成酶(SucoAs)缺失TCA循环的中断导致次数增加了60%,对生长速率没有明显影响。质粒的微调 - 传播的损伤剂*和P4H丰度导致葡萄糖的百下产量的显着增加。最终工程化的Hyp-7菌株产生高达21.72克/升的乳房,产率为0.27mol / mol(千粒/葡萄糖),摇动中的0.36g中心点L-1中心点HR(-1)的体积生产率。烧瓶发酵。据我们所知,这是葡萄糖最小培养基中的微生物发酵实现的最高产量和生产力。该策略通过通量耦合为UPP和相关产品发酵生产提供了新的洞察谷氨酰胺。

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