首页> 外文期刊>Journal of Bioscience and Bioengineering >Biosynthesis of poly(3-hydroxybutyrate-co-3-hydroxy-4-methylvalerate) by recombinant Escherichia coli expressing leucine metabolism-related enzymes derived from Clostridium difficile
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Biosynthesis of poly(3-hydroxybutyrate-co-3-hydroxy-4-methylvalerate) by recombinant Escherichia coli expressing leucine metabolism-related enzymes derived from Clostridium difficile

机译:表达艰难梭菌亮氨酸代谢相关酶的重组大肠杆菌生物合成聚3-羟基丁酸酯-co-3-羟基-4-甲基戊酸酯

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摘要

An obligate anaerobic bacterium Clostridium difficile has a unique metabolic pathway to convert leucine to 4-meth-ylvalerate, in which 4-methyl-2-pentenoyI-CoA (4M2PE-CoA) is an intermediate of this pathway. 4M2PE-CoA is also able to be converted to 3-hydroxy-4-methylvalerate (3H4MV), a branched side chain monomer unit, for synthesis of poly-hydroxyalkanoate (PHA) copolymer. In this study, to synthesize 3H4MV-containing PHA copolymer from leucine, the leucine metabolism-related enzymes (LdhA and HadAIBC) derived from C. difficile and PHA biosynthesis enzymes (PhaPCJ_(Ac) and PhaAB_(Re)) derived from Aeromonas caviae and Ralstonia eutropha were co-expressed in the codon usage-improved Escherichia coli. Under microaerobic culture conditions, this E. coll was able to synthesize P(3HB-co-12.2 mol% 3H4MV) from glucose with the supplementation of 1 g/L leucine. This strain also produced P(3HB-co-12.6 mol% 3H4MV) using the culture supernatant of leucine overproducer E. colt strain NS1391 as the medium for PHA production, achieving 3H4MV copolymer synthesis only from glucose. Furthermore, we tested the feasibility of the 3H4MV copolymer synthesis in E. coll strain NS1391 from glucose. The recombinant E. coli NS1391 was able to synthesize P(3HB-co-3.0 mol% 3H4MV) from glucose without any leucine supplementation. This study demonstrates the potential of the new metabolic pathway for 3H4MV synthesis using leucine metabolism-related enzymes from C difficile.
机译:专性厌氧细菌艰难梭菌具有独特的代谢途径,可将亮氨酸转化为4-甲基-戊酸,其中4-甲基-2-戊烯酰-CoA(4M2PE-CoA)是该途径的中间产物。 4M2PE-CoA还可以转化为支链侧链单体单元3-羟基-4-甲基戊酸酯(3H4MV),用于合成聚羟基链烷酸酯(PHA)共聚物。在这项研究中,要从亮氨酸合成含3H4MV的PHA共聚物,应从艰难梭菌衍生出亮氨酸代谢相关酶(LdhA和HadAIBC),并从鼠气单胞菌和拟南芥中衍生出PHA生物合成酶(PhaPCJ_(Ac)和PhaAB_(Re))。 Ralstonia eutropha在密码子使用改良的大肠杆菌中共表达。在微需氧培养条件下,该大肠杆菌可通过补充1 g / L亮氨酸从葡萄糖合成P(3HB-co-12.2 mol%3H4MV)。使用亮氨酸过量生产者大肠杆菌柯尔特氏菌株NS1391的培养上清液作为PHA生产的培养基,该菌株还产生了P(3HB-co-12.6 mol%3H4MV),仅由葡萄糖合成了3H4MV共聚物。此外,我们测试了在大肠杆菌中从葡萄糖合成3H4MV共聚物的可行性。重组大肠杆菌NS1391能够在不添加任何亮氨酸的情况下由葡萄糖合成P(3HB-co-3.0 mol%3H4MV)。这项研究证明了使用艰难梭菌亮氨酸代谢相关酶进行3H4MV合成的新代谢途径的潜力。

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