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双功能海藻酸裂解酶Aly644的特性及酶解产物的抗菌活性

Characterization of bifunctional alginate lyase Aly644 and antimicrobial activity of enzymatic hydrolysates.

作者信息

Zhang Ao, Cao Zhe, Zhao Luying, Zhang Qian, Fu Liping, Li Jiang, Liu Tao

机构信息

Department of Pharmaceutical Engineering, College of Chemical Engineering, Qingdao University of Science and Technology, Qingdao, 266042, China.

Key Lab of Ecological Environment Science and Technology, First Institute of Oceanography, Ministry of Natural Resources, Qingdao, 266061, China.

出版信息

Appl Microbiol Biotechnol. 2023 Nov;107(22):6845-6857. doi: 10.1007/s00253-023-12745-4. Epub 2023 Sep 12.

Abstract

An alginate lyase gene aly644 encoding a member of polysaccharide lyase family 6 was obtained from a metagenome of Antarctic macroalgae-associated microbes. The gene was expressed heterologously in Escherichia coli, and the recombinant protein was purified using a Ni-NTA His Tag Kit. With sodium alginate as the substrate, recombinant Aly644 exhibited an optimum reaction temperature of 50°C and an optimum reaction pH of 7.0. The V and K values of Aly644 toward sodium alginate were 112.36 mg/mL·min and 16.75 mg/mL, respectively. Substrate specificity analysis showed that Aly644 was a bifunctional alginate lyase that hydrolyzed both polyguluronic acid and polymannuronic acid. The hydrolysis products of Aly644 with sodium alginate as the substrate were detected by thin-layer chromatography, and were mainly di- and trisaccharides. The oligosaccharides produced by degradation of sodium alginate by Aly644 inhibited the mycelial growth of the plant pathogens Phytophthora capsici and Fulvia fulva; the 50% maximal effective concentration (EC) values were 297.45 and 452.89 mg/L, and the 90% maximal effective concentration (EC) values were 1341.45 and 2693.83 mg/L, respectively. This highlights that Aly644 is a potential candidate enzyme for the industrial production of alginate oligosaccharides with low degree of polymerization. Enzyme-hydrolyzed alginate oligosaccharides could support the development of green agriculture as natural antimicrobial agents. KEY POINTS: • An alginate lyase was obtained from a metagenome of Antarctic macroalgae-associated microbes. • Aly644 is a bifunctional alginate lyase with excellent thermostability and pH stability. • The enzymatic hydrolysates of Aly644 directly inhibited Phytophthora capsici and Fulvia fulva.

摘要

从南极大型藻类相关微生物的宏基因组中获得了一个编码多糖裂解酶家族6成员的海藻酸盐裂解酶基因aly644。该基因在大肠杆菌中进行了异源表达,重组蛋白使用镍-氮三乙酸组氨酸标签试剂盒进行了纯化。以海藻酸钠为底物时,重组Aly644表现出最佳反应温度为50°C,最佳反应pH值为7.0。Aly644对海藻酸钠的V和K值分别为112.36 mg/mL·min和16.75 mg/mL。底物特异性分析表明,Aly644是一种双功能海藻酸盐裂解酶,可水解聚古洛糖醛酸和聚甘露糖醛酸。用薄层色谱法检测了Aly644以海藻酸钠为底物的水解产物,主要为二糖和三糖。Aly644降解海藻酸钠产生的寡糖抑制了植物病原菌辣椒疫霉和番茄褐纹病菌丝体的生长;50%最大有效浓度(EC)值分别为297.45和452.89 mg/L,90%最大有效浓度(EC)值分别为1341.45和2693.83 mg/L。这突出表明Aly644是工业生产低聚合度海藻酸寡糖潜在的候选酶。酶解海藻酸寡糖作为天然抗菌剂可支持绿色农业发展。要点:• 从南极大型藻类相关微生物宏基因组中获得一种海藻酸盐裂解酶。• Aly644是一种具有优异热稳定性和pH稳定性的双功能海藻酸盐裂解酶。• Aly644的酶解产物直接抑制辣椒疫霉和番茄褐纹病。

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