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Engineering an in vivo EP-bifido pathway in Escherichia coli for high-yield acetyl-CoA generation with low CO emission.

Metab. Eng.. 2018-08; 
WangQian,XuJiasheng,SunZhijie,LuanYaqi,LiYing,WangJunshu,LiangQuanfeng,QiQings
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Gene Synthesis … into the XbaI and BamHI sites of pUC19. To construct plasmid pBSA, the codon-optimized genes mvaS and mvaA from Lactobacillus casei were synthesized by GenScript (Nanjing, China). Then, atoB from E. coli and mvaS … Get A Quote

摘要

The low carbon yield from native metabolic machinery produces unfavorable process economics during the biological conversion of substrates to desirable bioproducts. To obtain higher carbon yields, we constructed a carbon conservation pathway named EP-bifido pathway in Escherichia coli by combining Embden-Meyerhof-Parnas Pathway, Pentose Phosphate Pathway and "bifid shunt", to generate high yield acetyl-CoA from glucose. C-Metabolic flux analysis confirmed the successful and appropriate employment of the EP-bifido pathway. The CO release during fermentation significantly reduced compared with the control strains. Then we demonstrated the in vivo effectiveness of the EP-bifido pathway using poly-β-hydroxyb... More

关键词

(13)C-Metabolic flux analysis,EP-bifido pathway,Escherichia coli,NADPH,Poly-β-hydroxybuty