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An Artificial Biosynthetic Pathway for 2-Amino-1,3-Propanediol Production Using Metabolically Engineered Escherichia coli

机译:使用代谢工程的大肠杆菌的2-氨基-1,3-丙二醇产生的人工生物合成途径

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2-Amino-1,3-propanediol (2-APD) is a chemical building block for the production of various value-added pharmaceuticals, However, the current manufacture of 2-APD predominantly relies on chemical processes by utilizing fossil fuel-derived and highly explosive raw materials. Herein, we established an artificial biosynthetic pathway for converting glucose to 2-APD in a metabolically engineered Escherichia coli. This artificial pathway employs an engineered heterogeneous aminotransferase RtxA for diverting dihydroxyacetone phosphate to generate 2-APD phosphate and an endogenous phosphatase for converting it into the target product 2-APD. Through fine-tuning the activity and solubility of RtxA. for efficiently extending the glycolysis pathway, enhancing the metabolic recycling of amino-containing substrate supply via nitrogen-borrowing, and unlocking the dephosphorylation involved in the downstream pathway, the best metabolically engineered E. coli strain LYC-5 was constructed stepwise. Under aerobic conditions, a fed-batch fermentation of the strain LYC-5 produced 14.6 g/L 2-APD with a productivity of 0.122 g/L/h in a 6-L bioreactor, which was the highest reported titer to the best of our knowledge. This work demonstrates the great potential to provide an environmentally friendly and efficient approach for 2-APD production.
机译:2-氨基-1,3-丙二醇(2-APD)是用于生产各种增值药物的化学结构块,然而,通过利用化石燃料衍生和源于化学过程高度爆炸性的原料。在此,我们建立了一种用于将葡萄糖转化为2-APD的人工生物合成途径在代谢工程的大肠杆菌中。这种人工途径采用工程化的非均相氨基转移酶RTXA,用于转移二羟基丙酮磷酸酯以产生2-APD磷酸盐和内源性磷酸酶,用于将其转化为靶产物2-APD。通过微调RTXA的活性和溶解度。为了有效地延长糖酵解途径,通过氮气借用增强含氨基底物供应的代谢再循环,并解锁涉及下游途径中涉及的去磷酸化,逐步构建最佳的代谢工程化大肠杆菌菌株Lyc-5。在有氧条件下,菌株Lyc-5的膳食批量发酵在6-L生物反应器中制备了14.6g / L 2-APD,其生产率为0.122g / l / h,这是最高报告的滴度我们的知识。这项工作展示了为2 APD生产提供环保和有效的方法的巨大潜力。

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