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Biosynthesis of butenoic acid through fatty acid biosynthesis pathway in Escherichia coli

机译:大肠杆菌中通过脂肪酸生物合成途径进行丁烯酸的生物合成

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Butenoic acid is a C4 short-chain unsaturated fatty acid mainly used in the preparation of resins, pharmaceuticals, and fine chemicals. However, butenoic acid derived from petroleum is costly and unfriendly to the environment. Here, we report a novel biosynthetic strategy to produce butenoic acid by utilizing the intermediate of fatty acid biosynthesis pathway in engineered Escherichia coli. A thioesterase gene (B. thetaiotaomicron thioesterase (bTE)) from Bacteroides thetaiotaomicron was heterologously expressed in E. coli to specifically convert butenoyl-acyl carrier protein (ACP), a fatty acid biosynthesis intermediate, to butenoic acid. The titer of butenoic acid ranged from 0.07 to 11.4 mg/L in four different E. coli strains with varied expressing vectors. Deletion of endogenous fadD gene (encoding acyl-CoA synthetase) to block fatty acid oxidation improved the butenoic acid production in all strains to some extent. The highest butenoic acid accumulation of 18.7 mg/L was obtained in strain XP-2 (BL21-Delta fadD/pET28a-bTE). Moreover, partially inhibiting the enoyl-ACP reductase (FabI) of strain XP-2 by triclosan increased butenoic acid production by threefold, and the butenoic acid titer was further increased to 161.4 mg/L by supplying glucose and tryptone in the M9 medium. Fed-batch fermentation of this strain further enhanced butenoic acid production to 4.0 g/L within 48 h. The butenoic acid tolerance assay revealed that this strain could tolerate 15-20 g/L of butenoic acid.
机译:丁烯酸是一种C4短链不饱和脂肪酸,主要用于制备树脂,药物和精细化学品。但是,衍生自石油的丁烯酸价格昂贵并且对环境不友好。在这里,我们报告了一种利用工程化大肠杆菌中脂肪酸生物合成途径的中间体生产丁烯酸的新型生物合成策略。在大肠杆菌中异源表达了来自拟杆菌的硫代酯酶基因(B. thetaiotaomicron thioesterase(bTE)),以将脂肪酸生物合成中间体丁烯酰基-酰基载体蛋白(ACP)特异性转化为丁烯酸。在四种具有不同表达载体的大肠杆菌菌株中,丁烯酸的滴度范围为0.07至11.4 mg / L。删除内源性fadD基因(编码酰基辅酶A合成酶)以阻断脂肪酸氧化可在一定程度上提高所有菌株中丁酸的产量。在XP-2菌株(BL21-Delta fadD / pET28a-bTE)中获得最高的丁烯酸累积18.7 mg / L。此外,三氯生部分抑制XP-2菌株的烯酰ACP还原酶(FabI)使丁酸产量增加了三倍,并且通过在M9培养基中提供葡萄糖和胰蛋白tone,丁烯酸滴度进一步提高至161.4 mg / L。该菌株的分批补料发酵进一步在48小时内将丁烯酸产量提高到4.0 g / L。丁酸耐受性测定表明该菌株可耐受15-20 g / L的丁酸。

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