氧化脱氨基
化学
还原胺化
级联反应
氧化磷酸化
基质(水族馆)
辅因子
对映体过量
组合化学
氧化脱羧
生物催化
酶
胺化
有机化学
生物化学
反应机理
催化作用
对映选择合成
生物
生态学
作者
Cheng-Hao Cao,Huo Gong,Yan Dong,Ju‐Mou Li,Feng Cheng,Ya‐Ping Xue,Yu-Guo Zheng
标识
DOI:10.1016/j.jbiotec.2020.09.024
摘要
Deracemization of D,L-phosphinothricin (D,L-PPT) is one of the most promising routes for preparation of optically pure L-PPT. In this work, an efficient multi-enzyme redox cascade was developed for deracemization ofPPT, which includes oxidative reaction and reductive reaction. The oxidative reaction catalyzing oxidative deamination of D-PPT to 2-oxo-4-[(hydroxy)(-methyl)phosphinyl]butyric acid (PPO) was performed by a D-amino acid oxidase and a catalase for removing H2O2. The reductive reaction catalyzing amination of PPO to L-PPT is achieved by a glufosinate dehydrogenase and a glucose dehydrogenase for cofactor regeneration. To avoid the inhibitory effect of glucose on the oxidative reaction, a “two stages in one-pot” strategy was developed to combine these two reactions in deracemization process. By using this strategy, the L-PPT was obtained with a high yield (89 %) and > 99 % enantiomeric excess at substrate loading of 300 mM in absence of addition of extra NADP+. These encouraging results demonstrated that the developed enzyme cascade deracemization process exhibits great potential and economical competitiveness for manufacture of L-PPT from D,L-PPT.
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