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从嗜热栖热菌 YT1 中扩大生产热稳定脂肪酶。

Scaling-up the production of thermostable lipolytic enzymes from Thermus aquaticus YT1.

机构信息

Department of Chemical Engineering, University of Vigo, 36310 Vigo, Spain.

出版信息

Bioprocess Biosyst Eng. 2012 Aug;35(6):1011-22. doi: 10.1007/s00449-012-0686-4.

Abstract

The lipolytic enzymes synthesized by Thermusaquaticus YT1 present extremely interesting properties of thermostability (more than 70% of activity after 12 days at 80°C and a half-life time of 1 h at 95°C), which point out the interest of proposing efficient strategies to successfully tackle the scale-up of the production process. In this study,viable scaling-up of the production process was implemented,and relevant aspects affecting the enzyme synthesis, such as the mineral composition of the culture medium, the aeration and the agitation have been evaluated.A strategy combining the modification of the culture medium and the aeration degree was also approached by adding perfluorocarbons, compounds which improve the availability of oxygen in the culture medium. An opposite response of biomass and lipolytic activity to the aeration conditions was found between scales (about 600 U L(-1) at high aeration levels in flask vs. 150 U L(-1) at high aeration rates in reactor), which further demonstrates the important role of the hydrodynamic conditions on the suitable development of the biological process. In all cases, the cultures were kinetically characterized and the Luedeking and Piret model turned out to be a valuable tool to conclude that the produced lipolytic enzyme is a growth-associated metabolite, no matter the medium and the scale.

摘要

嗜热栖热菌 YT1 合成的脂肪酶具有非常有趣的热稳定性特性(在 80°C 下 12 天后仍保持超过 70%的活性,在 95°C 下半衰期为 1 小时),这表明提出有效策略成功解决生产过程放大的问题具有重要意义。在本研究中,成功实现了生产过程的可行放大,并评估了影响酶合成的相关方面,如培养基的矿物质组成、通气和搅拌。还通过添加全氟碳化合物(可提高培养基中氧气的可用性的化合物)来探讨结合培养基改性和通气程度的策略。在不同规模下(在摇瓶中高通气水平下约为 600 U L(-1),在反应器中高通气速率下为 150 U L(-1)),发现生物量和脂肪酶活性对通气条件的反应相反,这进一步证明了水动力条件对生物过程的适当发展的重要作用。在所有情况下,对培养物进行了动力学特征分析,结果表明,Luedeking 和 Piret 模型是一个有用的工具,可以得出所产生的脂肪酶是与生长相关的代谢物的结论,无论培养基和规模如何。

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