食品科学 ›› 2025, Vol. 46 ›› Issue (20): 370-382.doi: 10.7506/spkx1002-6630-20250216-060

• 专题论述 • 上一篇    下一篇

赭曲霉毒素A降解酶研究进展

牛泽慧,梁志宏   

  1. (1.中国农业大学食品科学与营养工程学院,北京 100083;2.食品质量与安全北京实验室,北京 100083;3.农业农村部转基因生物食用安全监督检验测试中心(北京),北京 100083)
  • 出版日期:2025-10-25 发布日期:2025-09-17
  • 基金资助:
    “十四五”国家重点研发计划重点专项(2023YFD1301004)

Current Advances in Ochratoxin A-Degrading Enzymes

NIU Zehui, LIANG Zhihong   

  1. (1. College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, China; 2. Beijing Laboratory for Food Quality and Safety, Beijing 100083, China; 3. The Supervision, Inspection and Testing Center of Genetically Modified Organisms, Ministry of Agriculture and Rural Affairs, Beijing 100083, China)
  • Online:2025-10-25 Published:2025-09-17

摘要: 赭曲霉毒素A(ochratoxin A,OTA)因其毒性、理化性质稳定性及在食品和饲料中的广泛污染,严重威胁人类与动物健康及生态环境安全。生物酶因其高效、绿色及良好特异性,已成为OTA脱毒研究的重点方向。本文系统综述了目前已报道的OTA降解酶,重点探讨其表达水平与酶学性能的优化策略。当前研究主要集中于羧肽酶和酰胺水解酶,其中OTase与SaADH3在降解效率及研究深度方面具有代表性。鉴于天然OTA降解酶表达量有限且稳定性不足,高效表达系统的构建与优化成为其应用的关键。通过基因元件优化、表达体系选择、表达条件优化以及酶固定化与理性设计等手段,可显著提升OTA降解酶的表达水平、催化活性、耐热性与耐酸性。未来研究应进一步聚焦OTA降解酶的性能提升与工业化应用,推动其在食品与饲料安全领域的实际应用落地。

关键词: 赭曲霉毒素A;降解酶;酶表达;酶脱毒

Abstract: Ochratoxin A (OTA) poses a serious threat to human and animal health as well as the ecological environment due to its high toxicity, stable physicochemical properties, and widespread occurrence in food and feed. Because of their high efficiency, environmental friendliness and good specificity, biological enzymes have become an important research direction of OTA detoxification. This review systematically summarizes the OTA-degrading enzymes that have been reported, focusing on the strategies for optimizing their expression levels and enzymatic performance. The current research mainly focuses on carboxypeptidases and amidohydrolases, among which OTase and SaADH3 are representative in terms of their degradation efficiency and research depth. In view of the limited expression level and stability of natural OTA-degrading enzymes, the construction and optimization of efficient expression systems are crucial for their application. The expression level, catalytic activity, heat and acid tolerance of OTA-degrading enzymes can be significantly improved by gene element optimization, expression system selection, expression condition optimization, enzyme immobilization and rational design. Future research should further focus on the performance improvement and industrial application of OTA-degrading enzymes to promote their practical application in the field of food and feed safety.

Key words: ochratoxin A; degrading enzymes; enzyme expression; enzymatic detoxification

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