化学
酶
产量(工程)
变位酶
生物催化
固定化酶
酶催化
生物合成
丙氨酸
生物化学
苯乙酮
组合化学
立体化学
催化作用
氨基酸
反应机理
材料科学
冶金
作者
Heng Tang,Hongli Zhu,Jin‐Xing Zhong,Meng‐Nan Wang,Ya‐Ping Xue,Yu‐Guo Zheng
出处
期刊:ChemBioChem
[Wiley]
日期:2023-05-12
卷期号:24 (12): e202300165-e202300165
被引量:3
标识
DOI:10.1002/cbic.202300165
摘要
Abstract We developed a synthetic route for producing 3‐amino‐2‐hydroxy acetophenone (3AHAP) from m‐nitroacetophenone (3NAP) using an in vitro approach. Various reaction systems were evaluated, and a direct reaction method with crude enzyme and supersaturated substrates for optimal catalytic efficiency was chosen. The reaction system included three enzymes and was enhanced by adjusting enzyme molar ratios and optimizing ribosomal binding sites. We performed substrate docking and alanine scanning to identify key sites in the enzymes nitrobenzene nitroreductase (nbzA) and hydroxylaminobenzene mutase (habA). The optimal mutant was obtained through site‐directed mutagenesis, and incorporated into the reaction system, resulting in increased product yield. After optimization, the yield of 3AHAP increased from 75 mg/L to 580 mg/L within 5 hours, the highest reported yield using biosynthesis. This work provides a promising strategy for the efficient and sustainable production of 3AHAP, which has critical applications in the chemical and pharmaceutical industries.
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