葡萄
基质(水族馆)
白藜芦醇
化学
底物特异性
催化作用
有机化学
甲基转移酶
组合化学
酶
生物化学
植物
生物
基因
甲基化
生态学
作者
Kamela Myrtollari,Andrea M. Chánique,Daniel Kracher,Daniela P. Herrera,Joaquin Gutierrez‐Benavente,Andreas Schüller,Robert Kourist
出处
期刊:Chemcatchem
[Wiley]
日期:2025-04-24
卷期号:17 (14)
被引量:3
标识
DOI:10.1002/cctc.202402027
摘要
Abstract Enzymatic decarboxylation of phenolic acids enables the production of biobased phenolic styrenes under mild reaction conditions. However, the free para‐ phenolic group can lead to undesirable side products during polymerization, giving protection of the free phenolic OH group critical importance for the application in adhesives. Here we present a one‐pot two‐step cascade reaction in which phenolic acid decarboxylase from Bacillus subtilis ( Bs PAD) catalyzes the decarboxylation of coumaric acid, caffeic acid, ferulic acid, and sinapic acid, followed by O‐ methylation of the intermediate phenolic styrenes by resveratrol O ‐methyltransferase from Vitis vinifera ( Vv ROMT). The reaction sequence avoids the isolation and purification of the reactive intermediate hydroxystyrenes. Characterization of variants with amino acid substitution in the active‐site cavity led to the identification of variants without activity toward the four phenolic acids. This avoids undesired O ‐methylation of the starting material, which is not desirable since the decarboxylase does not convert the formed p ‐methoxyphenolic acids. Furthermore, variation of amino acids in the active site led to the identification of variants with improved activity for all four phenolic styrenes. The results constitute an important step toward the synthesis of biomass‐derived methoxystyrene derivatives whose photopolymerization yields polymers with outstanding adhesion properties.
科研通智能强力驱动
Strongly Powered by AbleSci AI