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中国精品科技期刊2020
洪晨铖,胡子璇,JosefVOGLMEIR,等. 普通楼燕(Apus apus)源N-乙酰氨基半乳糖转移酶的酵母表达及酶学特性[J]. 食品工业科技,2025,46(24):1−10. doi: 10.13386/j.issn1002-0306.2025010173.
引用本文: 洪晨铖,胡子璇,JosefVOGLMEIR,等. 普通楼燕(Apus apus)源N-乙酰氨基半乳糖转移酶的酵母表达及酶学特性[J]. 食品工业科技,2025,46(24):1−10. doi: 10.13386/j.issn1002-0306.2025010173.
HONG Chencheng, HU Zixuan, Josef VOGLMEIR, et al. Yeast Expression and Enzymatic Characterization of a Novel N-Acetylgalactosamine Transferase from Apus apus[J]. Science and Technology of Food Industry, 2025, 46(24): 1−10. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2025010173.
Citation: HONG Chencheng, HU Zixuan, Josef VOGLMEIR, et al. Yeast Expression and Enzymatic Characterization of a Novel N-Acetylgalactosamine Transferase from Apus apus[J]. Science and Technology of Food Industry, 2025, 46(24): 1−10. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2025010173.

普通楼燕(Apus apus)源N-乙酰氨基半乳糖转移酶的酵母表达及酶学特性

Yeast Expression and Enzymatic Characterization of a Novel N-Acetylgalactosamine Transferase from Apus apus

  • 摘要: 本文通过开发新型N-乙酰氨基半乳糖基转移酶用于黏蛋白体外O-糖基化修饰。通过构建源自普通楼燕(Apus apus)的ppGalNAcT基因重组表达载体,命名为AappGalNAcT11,并将其导入毕赤酵母细胞GS115中进行异源表达。通过酶促反应体系测定其催化活性,并分析最适反应温度及其温度稳定性、最适反应pH及其pH稳定性、金属离子依赖性及4 ℃储藏稳定性等生化特性。结果表明,该目的蛋白的分子量大小约为42.1 kDa,AappGalNAcT11能够特异性地将UDP-GalNAc 中的GalNAc连接到多肽EA2上,并且还能够实现向受体蛋白SUMO-MUC5AC上添加1~3个GalNAc,形成三种不同的Tn抗原结构。该酶的最适反应温度为37 ℃,在20~40 ℃孵育75 min后,均能保持95%以上活力,最适反应pH为9.0,pH在7~9时,孵育5 d后,残余酶活力均保留在80%以上。其催化活性显著依赖于锰离子的存在;此外,该酶具有良好的4 ℃稳定性,储藏21 d后,仍能保持80%的相对活性,对EA2的Km、Kcat及Kcat/Km的值分别为1.152 mmol·L−1、21.145 min−1、18.6 μmol·L−1·min−1,表明AappGalNAcT11具有较高的催化效率。本研究为黏蛋白体外O-糖基化修饰提供了新的工具酶AappGalNAcT11,同时也为该酶在生物合成及食品领域的应用奠定了理论基础。

     

    Abstract: In this study, a novel N-acetylgalactosaminyltransferase (GalNAcT) was developed for in vitro modification of mucins by O-glycosylation. A recombinant expression vector containing the ppGalNAcT gene derived from the common swift (Apus apus), AappGalNAcT11 was constructed, with heterologous expression in Pichia pastoris GS115 cells. The catalytic activity was determined using an enzymatic reaction system and its biochemical properties, including optimum reaction temperature and temperature stability, optimum reaction pH and pH stability, metal ion dependence, and storage stability, were analyzed. The molecular weight of the target protein is approximately 42.1 kDa. AappGalNAcT11 specifically transferred GalNAc from UDP-GalNAc to the peptide, EA2, and also added 1-3 GalNAc residues to the receptor protein, SUMO-MUC5AC, forming three distinct Tn antigen structures. The enzyme had optimal activity at 37 ℃ and retained >95% of its activity after incubation at 20 ℃ to 40 ℃ for 75 minutes. The optimal reaction pH was 9.0, and the enzyme retained >80% of its residual activity after incubation at pH 7 to 9 for five days. The catalytic activity was significantly dependent on the presence of manganese ions. In addition, the enzyme had excellent stability at 4 ℃, maintaining 80% of its relative activity after 21 days of storage. The Km values of AappGalNAcT11 for EA2 was 1.152 mmol·L−1,and the Kcat and Kcat/Km value for EA2 were 21.145 min−1 and 18.6 μmol·L−1·min−1, indicating the AappGalNAcT11 has high catalytic efficiency for EA2.This study provides a new enzyme, AappGalNAcT11, for in vitro modification of mucins by O-glycosylation and provides a theoretical foundation for its application in biosynthesis and the food industry.

     

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