羧化
化学
固碳
二氧化碳
区域选择性
有机化学
羧基裂解酶
固定(群体遗传学)
酶
生物化学
催化作用
基因
作者
Jie Chen,Shirong Wang,Junru Zhou,Jiaxing Xu,Bin Wu,Zhen Gao,Bingfang He
出处
期刊:Catalysts
[Multidisciplinary Digital Publishing Institute]
日期:2025-02-22
卷期号:15 (3): 210-210
标识
DOI:10.3390/catal15030210
摘要
The use of CO2 as a C1 carbon source for the synthesis of valuable chemicals through biotechnology methods represents an effective strategy to fix carbon dioxide. Phenolic acid decarboxylases possess the capability to introduce a carboxyl group into para-hydroxystyrenes for the regionally selective synthesis of (E)-para-hydroxycinnamic acids, utilizing bicarbonate as a CO2 source. It is difficult to achieve this reaction with traditional chemical methods, and only a few enzymes have been isolated and characterized. Here, we mined which low amino acid sequence shared its identity with those of related decarboxylases and which heterologously expressed phenolic acid decarboxylase PAD_Cs from Clostridium sp. DSM 8431 in E. coli. The recombinant PAD_Cs displayed maximum activity at 50 °C, and pH 5.0. PAD_Cs showed distinct carboxylation ability. The carboxylated substrates have a wide range of substitution modes on aromatic systems, including alkyl and alkoxy groups as well as halogens. Furthermore, the carboxylation conversion rates were impressive: para-hydroxystyrene exceeded 20% and 2-methoxy-4-vinylphenol surpassed 26%. This study indicated that PAD_Cs might serve as a potential enzyme source in biotechnological CO2 fixation.
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