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◆ Journal of Agricultural and Food Chemistry2026-01-15· Aflatoxin

Mechanism and Application of Thermostable Superoxide Dismutase from <i>Alcaligenes faecalis</i> HNGD-HTN06 to Degrade AFB <sub>1</sub> /ZEN

Minjie Hou, Nazish Muzaffar, Yanli Xie, Qingrong Huang, Yuhui Yang, Guanhong Chang

原始摘要(英文原文)· Original abstract
Mycotoxin contamination poses a serious risk to human and animal health. Here, we characterized AfSOD, a novel enzyme from Alcaligenes faecalis HNGD-HTN06, exhibiting dual activity against aflatoxin B 1 (AFB 1 ) and zearalenone (ZEN). AfSOD showed optimal degradation at pH 7.0 and 50 °C for AFB 1 (2.5 μg/mL) and pH 8.0 and 60 °C for ZEN (5 μg/mL), achieving 92.92% and 83.26% degradation within 24 h. The enzyme retained over 70% activity at 80 °C. LC-MS/MS identified AFQ 1 /epi-AFQ 1, AFB 1 -diol, 13-OH-ZEN, and 15-OH-ZEN as the main products, which were confirmed by zebrafish assays to be less toxic than parent compounds. Site-directed mutagenesis revealed H27, H81, H168, and D164 as key catalytic residues, and Y170 as crucial for thermostability. AfSOD efficiently lowered AFB 1 and ZEN in contaminated peanut and corn flours, demonstrating strong application potential. This is the first report on AfSOD’s biochemical features and dual mycotoxin-degrading capacity, highlighting its promise for food and feed safety.
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Mechanism and Application of Thermostable Superoxide Dismutase from <i>Alcaligenes faecalis</i> HNGD-HTN06 to Degrade AFB <sub>1</sub> /ZEN — 科研速览 Science Skim