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真菌G家族嗜酸木聚糖酶的分子结构与催化机制

Molecular structure and catalytic mechanism of fungal family G acidophilic xylanases.

作者信息

Dey Protyusha, Roy Amit

机构信息

Department of Biotechnology, Visva-Bharati University, Santiniketan, 731235 West Bengal India.

出版信息

3 Biotech. 2018 Feb;8(2):78. doi: 10.1007/s13205-018-1091-8. Epub 2018 Jan 15.

Abstract

Industrial applications of xylanases have made this enzyme an important subject of applied research work. Function of this particular enzyme is to degrade or hydrolyze the plentiful polysaccharide xylan, an important component of hemicellulose. It mainly cleaves the backbone of xylan that is made up of a number of xylose residues connected with β-1,4-glycosidic linkages. Fungi with mycelia are regarded as the best producer of xylanases. These varied xylanases not only differ in their sizes and shapes but also differ in their physicochemical properties. Depending on the optimum pH in which they work best, they have been classified into (1) acidophilic xylanases active at low pH or acidic pH range, (2) alkaliphilic xylanases that are active at high or alkaline pH range and (3) neutral xylanases having pH optima in the neutral range between pH 5 and 7. Other researchers have classified the xylanases also on the basis of their structural properties, kinetic parameters, etc. This review discusses the molecular structures of some acidophilic xylanases and the molecular basis of low pH optima observed for their activities. It also discusses their unique catalytic mechanism and actual role of the catalytic residues found in them. Apart from these, the review also discusses different applications of these acidophilic xylanases in different industries. The article concludes with brief suggestions about how these acidophilic xylanases can be created employing the techniques of genetic engineering and concepts of synthetic evolution, using the traits of the known acidophilic xylanases discussed in the review.

摘要

木聚糖酶的工业应用使其成为应用研究工作的一个重要课题。这种特殊酶的功能是降解或水解丰富的多糖木聚糖,木聚糖是半纤维素的重要组成部分。它主要切断由许多通过β-1,4-糖苷键连接的木糖残基组成的木聚糖主链。具有菌丝体的真菌被认为是木聚糖酶的最佳生产者。这些不同的木聚糖酶不仅在大小和形状上不同,而且在物理化学性质上也不同。根据它们发挥最佳作用的最适pH值,它们被分为:(1)在低pH值或酸性pH范围内有活性的嗜酸木聚糖酶;(2)在高pH值或碱性pH范围内有活性的嗜碱木聚糖酶;以及(3)最适pH值在pH 5至7之间中性范围内的中性木聚糖酶。其他研究人员也根据木聚糖酶的结构特性、动力学参数等对其进行了分类。本综述讨论了一些嗜酸木聚糖酶的分子结构以及观察到的其活性低pH最适值的分子基础。它还讨论了它们独特的催化机制以及其中发现的催化残基的实际作用。除此之外,该综述还讨论了这些嗜酸木聚糖酶在不同行业的不同应用。文章最后简要提出了如何利用基因工程技术和合成进化概念,借鉴本综述中讨论的已知嗜酸木聚糖酶的特性来构建这些嗜酸木聚糖酶的建议。

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