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海洋细菌粘球菌中 ι-卡拉胶酶的发酵优化、纯化及生化特性分析

Fermentation optimization, purification and biochemical characterization of ι-carrageenase from marine bacterium Cellulophaga baltica.

机构信息

School of Natural Sciences and Health, Tallinn University, Narva mnt 29, 10120 Tallinn, Estonia.

School of Natural Sciences and Health, Tallinn University, Narva mnt 29, 10120 Tallinn, Estonia.

出版信息

Int J Biol Macromol. 2021 Jan 1;166:789-797. doi: 10.1016/j.ijbiomac.2020.10.236. Epub 2020 Nov 3.

Abstract

The ι-carrageenan degrading marine bacterium, Cellulophaga baltica, was isolated from the surface of a filamentous red alga Vertebrata fucoides. Maximum ι-carrageenase production was optimized by single-factor experiments. Optimal fermentation conditions were 1.6 g/L furcellaran, 4 g/L yeast extract as carbon sources, 5 g/L sea salt, and 48 h of incubation time at 20 °C. Extracellular ι-carrageenase from the culture supernatant was purified by ultrafiltration, ammonium sulfate precipitation, and finally by anion-exchange chromatography, showed a 26-fold increase in specific activity as compared to that in the crude enzyme. According to the results from SDS-PAGE and HPLC-SEC, the molecular weight of the purified enzyme was estimated to be 31 kDa. The purified enzyme showed the maximum specific activity of 571 U/mg at 40 °C and pH 7.5-8.0. It maintained 73% of the total activity below 40 °C and 90% of its total activity at pH 7.2. Notably, the enzyme is a cold-adapted ι-carrageenase, which showed 33.4% of the maximum activity at 10 °C. The enzyme was stimulated by Na, K, and NH, whereas Ca, Mg, Fe, sea salt, and EDTA acted as enzyme inhibitors.

摘要

从丝状红藻 Vertebrata fucoides 的表面分离出了降解 ι-卡拉胶的海洋细菌 Cellulophaga baltica。通过单因素实验优化了 ι-卡拉胶酶的最大产量。最佳发酵条件为:1.6 g/L 卡拉胶,4 g/L 酵母提取物为碳源,5 g/L 海盐,20°C 孵育 48 h。从培养上清液中提取的细胞外 ι-卡拉胶酶经超滤、硫酸铵沉淀,最后经阴离子交换层析纯化,比活力比粗酶提高了 26 倍。根据 SDS-PAGE 和 HPLC-SEC 的结果,纯化酶的分子量估计为 31 kDa。该纯化酶在 40°C 和 pH 7.5-8.0 时表现出最大比活力 571 U/mg。它在 40°C 以下保持 73%的总活性,在 pH 7.2 下保持 90%的总活性。值得注意的是,该酶是一种冷适应的 ι-卡拉胶酶,在 10°C 时表现出最大活性的 33.4%。该酶受 Na+、K+和 NH+4的刺激,而 Ca2+、Mg2+、Fe2+、海盐和 EDTA 则作为酶抑制剂。

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