麦芽糊精
生物转化
产量(工程)
体外
化学
淀粉
生物化学
摩尔比
生物合成
基质(水族馆)
酶
催化作用
有机化学
材料科学
生物
冶金
喷雾干燥
生态学
作者
Xinlei Wei,Xue Yang,Congcong Hu,Qiangzi Li,Qianqian Liu,Yue Wu,Leipeng Xie,Xiao Ning,Fēi Li,Tao Cai,Zhiguang Zhu,Y.‐H. Percival Zhang,Yanfei Zhang,Xuejun Chen,Chun You
标识
DOI:10.1038/s41467-024-46871-y
摘要
Abstract In vitro biotransformation (ivBT) facilitated by in vitro synthetic enzymatic biosystems (ivSEBs) has emerged as a highly promising biosynthetic platform. Several ivSEBs have been constructed to produce poly-3-hydroxybutyrate (PHB) via acetyl-coenzyme A (acetyl-CoA). However, some systems are hindered by their reliance on costly ATP, limiting their practicality. This study presents the design of an ATP-free ivSEB for one-pot PHB biosynthesis via acetyl-CoA utilizing starch-derived maltodextrin as the sole substrate. Stoichiometric analysis indicates this ivSEB can self-maintain NADP + /NADPH balance and achieve a theoretical molar yield of 133.3%. Leveraging simple one-pot reactions, our ivSEBs achieved a near-theoretical molar yield of 125.5%, the highest PHB titer (208.3 mM, approximately 17.9 g/L) and the fastest PHB production rate (9.4 mM/h, approximately 0.8 g/L/h) among all the reported ivSEBs to date, and demonstrated easy scalability. This study unveils the promising potential of ivBT for the industrial-scale production of PHB and other acetyl-CoA-derived chemicals from starch.
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