Self-cascade deoxynivalenol detoxification by an artificial enzyme with bifunctions of dehydrogenase and aldo/keto reductase from genome mining

戒毒(替代医学) 醇脱氢酶 酪氨酸酶 化学 双功能 还原酶 生物化学 醛酮还原酶 脱氢酶 真菌毒素 食品科学 催化作用 医学 病理 替代医学
作者
Jiafeng Niu,Ruxue Yan,Huimin Zhou,Bin Ma,Zhaoxin Lu,Fanqiang Meng,Fengxia Lü,Zhu Ping
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:261 (Pt 1): 129512-129512 被引量:23
标识
DOI:10.1016/j.ijbiomac.2024.129512
摘要

Due to the severe health risks for human and animal caused by the intake of toxic deoxynivalenol (DON) derived from Fusarium species, elimination DON in food and feed has been initiated as a critical issue. Enzymatic cascade catalysis by dehydrogenase and aldo-keto reductase represents a fascinating strategy for DON detoxification. Here, one quinone-dpendent alcohol dehydrogenase DADH oxidized DON into less-toxic 3-keto-DON and NADPH-dependent aldo-keto reductase AKR13B3 reduced 3-keto-DON into relatively non-toxic 3-epi-DON were identified from Devosia strain A6-243, indicating that degradation of DON on C3 are two-step sequential cascade processes. To establish the bifunctions, fusion enzyme linking DADH and AKR13B3 was successfully assembled to promote one-step DON degradations with accelerated specific activity and efficiency, resulting 93.29 % of DON removal rate in wheat sample. Three-dimensional simulation analysis revealed that the bifunctional enzyme forms an artificial intramolecular channel to minimize the distance of intermediate from DADH to AKR13B3 for two-step enzymatic reactions, and thereby accelerates this enzymatic process. As the first report of directing single step DON detoxification by an interesting bifunctional artificial enzyme, this work revealed a facile and eco-friendly approach to detoxify DON with application potential and gave valuable insights into execute other mycotoxin detoxification for ensuring food safety.
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