Wang Xiaofu, Zhao Yunsong, Zhang Sufang, Lin Xinping, Liang Huipeng, Chen Yingxi, Ji Chaofan
School of Food Science and Technology, Dalian Polytechnic University, Dalian 116034, China.
National Engineering Research Center of Seafood, Dalian 116034, China.
Foods. 2022 Oct 21;11(20):3306. doi: 10.3390/foods11203306.
Biogenic amines (BAs) are produced by microbial decarboxylation in various foods. Histamine and tyramine are recognized as the most toxic of all BAs. Applying degrading amine enzymes such as multicopper oxidase (MCO) is considered an effective method to reduce BAs in food systems. This study analyzed the characterization of heterologously expressed MCO from LS. Towards the typical substrate 2,2'-azino-bis (3-ethylbenzothiazoline-6-sulfonic acid) (ABTS), the optimal temperature and pH for recombinant MCO (rMCO) were 25 °C and 3.0, respectively, with the specific enzyme activity of 1.27 U/mg. Then, the effect of different environmental factors on the degrading activity of MCO towards two kinds of BAs was investigated. The degradation activity of rMCO is independent of exogenous copper and mediators. Additionally, the oxidation ability of rMCO was improved for histamine and tyramine with an increased NaCl concentration. Several food matrices could influence the amine-oxidizing activity of rMCO. Although the histamine-degrading activities of rMCO were affected, this enzyme reached a degradation rate of 28.1% in the presence of surimi. Grape juice improved the tyramine degradation activity of rMCO by up to 31.18%. These characteristics of rMCO indicate that this enzyme would be a good candidate for degrading toxic biogenic amines in food systems.
生物胺(BAs)是由各种食品中的微生物脱羧作用产生的。组胺和酪胺被认为是所有生物胺中毒性最强的。应用降解胺的酶,如多铜氧化酶(MCO),被认为是降低食品体系中生物胺的有效方法。本研究分析了来自LS的异源表达MCO的特性。对于典型底物2,2'-联氮-双(3-乙基苯并噻唑啉-6-磺酸)(ABTS),重组MCO(rMCO)的最佳温度和pH分别为25℃和3.0,比酶活为1.27 U/mg。然后,研究了不同环境因素对MCO降解两种生物胺活性的影响。rMCO的降解活性与外源铜和介质无关。此外,随着NaCl浓度的增加,rMCO对组胺和酪胺的氧化能力有所提高。几种食品基质会影响rMCO的胺氧化活性。虽然rMCO的组胺降解活性受到影响,但在鱼糜存在的情况下,该酶的降解率达到了28.1%。葡萄汁使rMCO的酪胺降解活性提高了31.18%。rMCO的这些特性表明,该酶将是食品体系中降解有毒生物胺的良好候选者。