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嗜盐脂肪酶和硫酯酶的生物技术应用。

Biotechnological applications of halophilic lipases and thioesterases.

作者信息

Schreck Steven D, Grunden Amy M

机构信息

Department of Microbiology, North Carolina State University, 4548 Thomas Hall, Campus Box 7615, Raleigh, NC, 27695-7615, USA.

出版信息

Appl Microbiol Biotechnol. 2014 Feb;98(3):1011-21. doi: 10.1007/s00253-013-5417-5. Epub 2013 Dec 7.

Abstract

Lipases and esterases are enzymes which hydrolyze ester bonds between a fatty acid moiety and an esterified conjugate, such as a glycerol or phosphate. These enzymes have a wide spectrum of use in industrial applications where their high activity, broad substrate specificity, and stability under harsh conditions have made them integral in biofuel production, textile processing, waste treatment, and as detergent additives. To date, these industrial applications have mainly leveraged enzymes from mesophilic and thermophilic organisms. However, increasingly, attention has turned to halophilic enzymes as catalysts in environments where high salt stability is desired. This review provides a brief overview of lipases and esterases and examines specific structural motifs and evolutionary adaptations of halophilic lipases. Finally, we examine the state of research involving these enzymes and provide an in-depth look at an exciting algal-based biofuel production system. This system uses a recombinant halophilic lipase to increase oil production efficiency by cleaving algal fatty acids from the acyl carrier protein, which eliminates feedback inhibition of fatty acid synthesis.

摘要

脂肪酶和酯酶是能够水解脂肪酸部分与酯化共轭物(如甘油或磷酸盐)之间酯键的酶。这些酶在工业应用中具有广泛用途,其高活性、广泛的底物特异性以及在苛刻条件下的稳定性,使其成为生物燃料生产、纺织品加工、废物处理以及洗涤剂添加剂中不可或缺的成分。迄今为止,这些工业应用主要利用来自嗜温生物和嗜热生物的酶。然而,越来越多的注意力转向嗜盐酶,将其作为在需要高盐稳定性的环境中的催化剂。本综述简要概述了脂肪酶和酯酶,并研究了嗜盐脂肪酶的特定结构基序和进化适应性。最后,我们研究了涉及这些酶的研究现状,并深入探讨了一个令人兴奋的基于藻类的生物燃料生产系统。该系统使用重组嗜盐脂肪酶,通过从酰基载体蛋白上切割藻类脂肪酸来提高产油效率,从而消除脂肪酸合成的反馈抑制。

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