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单宁酰基水解酶上下游加工的新策略

Novel strategies for upstream and downstream processing of tannin acyl hydrolase.

作者信息

Rodríguez-Durán Luis V, Valdivia-Urdiales Blanca, Contreras-Esquivel Juan C, Rodríguez-Herrera Raúl, Aguilar Cristóbal N

机构信息

Food Research Department, School of Chemistry, Autonomous University of Coahuila, Boulevard V. Carranza and González Lobo s/n, 25280 Saltillo, Coahuila, Mexico.

出版信息

Enzyme Res. 2011;2011:823619. doi: 10.4061/2011/823619. Epub 2011 Sep 19.

Abstract

Tannin acyl hydrolase also referred as tannase is an enzyme with important applications in several science and technology fields. Due to its hydrolytic and synthetic properties, tannase could be used to reduce the negative effects of tannins in beverages, food, feed, and tannery effluents, for the production of gallic acid from tannin-rich materials, the elucidation of tannin structure, and the synthesis of gallic acid esters in nonaqueous media. However, industrial applications of tannase are still very limited due to its high production cost. Thus, there is a growing interest in the production, recovery, and purification of this enzyme. Recently, there have been published a number of papers on the improvement of upstream and downstream processing of the enzyme. These papers dealt with the search for new tannase producing microorganisms, the application of novel fermentation systems, optimization of culture conditions, the production of the enzyme by recombinant microorganism, and the design of efficient protocols for tannase recovery and purification. The present work reviews the state of the art of basic and biotechnological aspects of tannin acyl hydrolase, focusing on the recent advances in the upstream and downstream processing of the enzyme.

摘要

单宁酰基水解酶也被称为鞣酸酶,是一种在多个科技领域具有重要应用的酶。由于其水解和合成特性,鞣酸酶可用于减少单宁在饮料、食品、饲料和制革废水中的负面影响,从富含单宁的材料中生产没食子酸,阐明单宁结构,以及在非水介质中合成没食子酸酯。然而,由于其生产成本高,鞣酸酶的工业应用仍然非常有限。因此,人们对这种酶的生产、回收和纯化越来越感兴趣。最近,已经发表了许多关于改进该酶上下游加工的论文。这些论文涉及寻找新的产鞣酸酶微生物、新型发酵系统的应用、培养条件的优化、重组微生物生产该酶,以及设计高效的鞣酸酶回收和纯化方案。本工作综述了单宁酰基水解酶基础和生物技术方面的现状,重点关注该酶上下游加工的最新进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cae3/3175710/4216631ebaa9/ER2011-823619.001.jpg

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