化学
基质(水族馆)
废水
核化学
环境化学
酚类
化学工程
水溶液
水污染
有机化学
作者
Feng Liu,Da Yan,Lingsen Kong,Fang Wang,Qianqian Wang,Jiakun Xu
标识
DOI:10.1021/acs.jafc.5c16908
摘要
Lignin-derived aromatic compounds (LDACs) are persistent pollutants in pulp and paper effluents, hindering agro-industrial biomass valorization. We developed H2O2-driven peroxygenase-type P450BM3 system that efficiently removes LDACs using H2O2 as the sole oxidant, eliminating the need for NADPH or redox-partner cofactors. Mechanistically guided mutations at F87, T268, A328, and V78 generated highly efficient mutants. The F87A/T268D/A328H mutant is an affinity-optimized mutant with exceptionally low apparent Km values of 0.26 and 0.61 mM for EU and ISO, respectively, corresponding to apparent catalytic efficiencies (kcat/Km) of 1.38 × 104 and 1.61 × 104 M–1 s–1. The F87A/T268D/A328F/V78A mutant, a turnover-optimized mutant, exhibits the highest apparent activity toward CA (1.47 × 104 M–1 s–1). UPLC-MS was employed to propose potential qualitative substrate transformation pathways for substrates. The optimized enzyme removed over 95% of LDACs in the simplified simulated wastewater. This DFSM/NADPH-free biocatalytic platform provides a low-cost, sustainable strategy for LDACs remediation and a reference for lignin-containing substrate removal.
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