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计算机辅助脂肪酶工程在提高其在食品工业中的稳定性和活性方面的应用:最新进展。

Computer-Aided Lipase Engineering for Improving Their Stability and Activity in the Food Industry: State of the Art.

机构信息

State Key Laboratory of Materials-Oriented Chemical Engineering, School of Pharmaceutical Sciences, Nanjing Tech University, Nanjing 210009, China.

出版信息

Molecules. 2023 Aug 3;28(15):5848. doi: 10.3390/molecules28155848.

Abstract

As some of the most widely used biocatalysts, lipases have exhibited extreme advantages in many processes, such as esterification, amidation, and transesterification reactions, which causes them to be widely used in food industrial production. However, natural lipases have drawbacks in terms of organic solvent resistance, thermostability, selectivity, etc., which limits some of their applications in the field of foods. In this systematic review, the application of lipases in various food processes was summarized. Moreover, the general structure of lipases is discussed in-depth, and the engineering strategies that can be used in lipase engineering are also summarized. The protocols of some classical methods are compared and discussed, which can provide some information about how to choose methods of lipase engineering. Thermostability engineering and solvent tolerance engineering are highlighted in this review, and the basic principles for improving thermostability and solvent tolerance are summarized. In the future, comput er-aided technology should be more emphasized in the investigation of the mechanisms of reactions catalyzed by lipases and guide the engineering of lipases. The engineering of lipase tunnels to improve the diffusion of substrates is also a promising prospect for further enhanced lipase activity and selectivity.

摘要

作为最广泛使用的生物催化剂之一,脂肪酶在酯化、酰胺化和酯交换等许多反应中表现出了极大的优势,这使得它们在食品工业生产中得到了广泛应用。然而,天然脂肪酶在有机溶剂抗性、热稳定性、选择性等方面存在缺陷,这限制了它们在食品领域的一些应用。在本系统综述中,总结了脂肪酶在各种食品加工过程中的应用。此外,还深入讨论了脂肪酶的一般结构,并总结了可用于脂肪酶工程的工程策略。比较和讨论了一些经典方法的方案,这可以为如何选择脂肪酶工程的方法提供一些信息。本文重点介绍了热稳定性工程和溶剂耐受性工程,并总结了提高热稳定性和溶剂耐受性的基本原则。在未来,计算机辅助技术应该在研究脂肪酶催化反应的机制方面得到更多的重视,并指导脂肪酶的工程改造。工程化脂肪酶隧道以改善底物的扩散也是进一步提高脂肪酶活性和选择性的一个有前途的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d54c/10421223/7e47dc87009a/molecules-28-05848-g001.jpg

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