化学
锰过氧化物酶
木质素
过氧化物酶
真菌毒素
生物化学
增强子
食品科学
酶
有机化学
转录因子
基因
作者
Xiaoyun Su,Shuai Wang,Xiaolu Wang,Wangli Ji,Honglian Zhang,Tao Tu,Nina Hakulinen,Huiying Luo,Bin Yao,Wei Zhang,H. C. Huang
标识
DOI:10.1016/j.ecoenv.2024.116130
摘要
The manganese peroxidase (MnP) can degrade multiple mycotoxins including deoxynivalenol (DON) efficiently; however, the lignin components abundant in foods and feeds were discovered to interfere with DON catalysis. Herein, using MnP from Ceriporiopsis subvermispora (CsMnP) as a model, it was demonstrated that desired catalysis of DON, but not futile reactions with lignin, in the reaction systems containing feeds could be achieved by engineering MnP and supplementing with a boosting reactant. Specifically, two successive strategies (including the fusion of CsMnP to a DON-recognizing ScFv and identification of glutathione as a specific targeting enhancer) were combined to overcome the lignin competition, which together resulted into elevation of the degradation rate from 2.5% to as high as 82.7% in the feeds. The method to construct a targeting MnP and fortify it with an additional enhancer could be similarly applied to catalyze the many other mycotoxins with yet unknown responsive biocatalysts.
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