真菌毒素
降级(电信)
酶
生物化学
化学
代谢途径
还原酶
细菌
加氧酶
生物
微生物学
转基因
生物合成
氧化还原酶
底物特异性
污染
新陈代谢
水解
氧化酶试验
呕吐毒素
细胞生物学
玉米赤霉烯酮
作者
Weijie He,Renyi Xiong,MengRu Zheng,Tiantian Zhang,Yushan Zhang,Qiang Wang,Changxing Zhao,Tao Huang,Yike Liu,Ye Tian,Karim M. Tabl,Xiaoming Mao,Pan Li,Guangwu Feng,Xuechen Bai,Qian Liu,Wenhao Yan,Yucai Liao,Jingbo Zhang,Ping Yin
标识
DOI:10.1038/s41467-026-70007-z
摘要
The mycotoxin deoxynivalenol (DON) poses severe threats to human and animal well-being globally. Enzymatic degradation is the most effective way to eliminate DON toxicity, yet no catalytic process for complete degradation of DON has been uncovered. Here, we show that a metabolic pathway initiated by C3-epimerization and C8-reduction is responsible for complete degradation of DON in the DON-metabolizing bacterium Nocardioides sp. S5-5. Two horizontally transferred aldo-keto reductase genes, DONepi and DONrd, have evolved to orchestrate C3-epimerization and C8-reduction respectively. Notably, the octameric-structured DONepi alone catalyzes C3-epimerization of DON by steering the rigid-body rotation of the transient 3-keto intermediate for stereoinverting reduction. Moreover, DONrd can catalyze the C8-reduction of DON and its C3-epimerized product 3-epi-DON simultaneously to form C8-hydroxyl products, which facilitates the further degradation by a potential oxidase and other putative enzymes. DONepi expression in transgenic plants confers resistance to DON, representing potential for controlling mycotoxin contamination pre- and postharvest.
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