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首页> 外文期刊>Journal of Biotechnology >Biosynthesis of adipic acid via microaerobic hydrogenation of cis,cis-muconic acid by oxygen-sensitive enoate reductase
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Biosynthesis of adipic acid via microaerobic hydrogenation of cis,cis-muconic acid by oxygen-sensitive enoate reductase

机译:通过CIS,CIS-粘液酸的微生物氢化通过氧敏感烯丙酸还原酶生物合成脂肪酸生物合成

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摘要

Adipic acid (AA) is an important dicarboxylic acid used for the manufacture of nylon and polyurethane plastics. In this study, a novel adipic acid biosynthetic pathway was designed by extending the cis,cis-muconic acid (MA) biosynthesis through biohydrogenation. Enoate reductase from Clostridium acetobutylicum (CaER), an oxygen-sensitive reductase, was demonstrated to have in vivo enzyme activity of converting cis, cis-muconic acid to adipic acid under microaerobic condition. Engineered Escherichia coli strains were constructed to express the whole pathway and accumulated 5.8 +/- 0.9 mg/L adipic acid from simple carbon sources. Considering the different oxygen demands between cis, cis-muconic acid biosynthesis and its degradation, a co-culture system was constructed. To improve production, T7 promoter instead of lac promoter was used for higher level expression of the key enzyme CaER and the titer of adipic acid increased to 18.3 +/- 0.6 mg/L. To decrease the oxygen supply to downstream strains expressing CaER, Vitreoscilla hemoglobin (VHb) was introduced to upstream strains for its ability on oxygen obtaining. This attempt further improved the production of this novel pathway and 27.6 +/- 1.3 mg/L adipic acid was accumulated under microaerobic condition.
机译:己二酸(AA)是用于制造尼龙和聚氨酯塑料的重要二羧酸。在该研究中,通过通过生物氢化延伸CIS,顺式粘液酸(MA)生物合成来设计一种新的己二酸生物合成途径。烯醇酯还原酶从乙酰丁基丁基(CAER),氧敏感还原酶,在微生物条件下将CIS,CIS-粘液酸与己二酸转化为己二酸的体内酶活性。构建工程的大肠杆菌菌株以表达整个途径,并累积5.8 +/- 0.9mg / L来自简单碳源的己二酸。考虑到CIS,CIS-粘酰酸生物合成与其降解之间的不同氧气需求,构建了一种共培养体系。为了改善产量,使用T7启动子代替LAC启动子进行较高水平的酶联酶粘衣,己二酸滴度增加至18.3 +/- 0.6mg / L.为了减少表达CAER的下游菌株的氧气供应,将Vitreoscilla血红蛋白(VHB)引入上游菌株以获得其氧气的能力。这种尝试进一步改善了这种新途径的生产,27.6 +/- 1.3 mg / L adipic酸在微血管条件下积累。

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