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转糖苷作用:多功能纤维素酶在克服纤维素水解过程中产物抑制的新作用

Transglycosylation, a new role for multifunctional cellulase in overcoming product inhibition during the cellulose hydrolysis.

机构信息

a State Key Laboratory of Tea Plant Biology and Utilization, School of Tea and Food Science Technology, Anhui Agricultural University , Hefei , Anhui , China.

出版信息

Bioengineered. 2017 Mar 4;8(2):129-132. doi: 10.1080/21655979.2016.1215787. Epub 2016 Jul 28.

Abstract

Cellulase mainly consisting of exo-glucanase, endo-glucanase and β-glucosidase, was considered as the most important biocatalyst for bioconversion of ethanol and other biofuels, feedstuffs and pharmaceuticals. Hydrolysis product inhibition, especially of glucose inhibition, is one of the critical difficulty awaiting to be overcome during cellulose bioconversion. Recently, several studies showed that some multifunctional cellulases (e.g., Umcel9y-1, Td2F2 and CoGH1A) could eliminate or relieve the product inhibition through transglycosylation actions during the cellulose hydrolysis. Transglycosylation confers multifunctional cellulases insensitive character to the end products (glucose and/or cellobiose), and provides a potential access in overcoming the inhibition of biofuels conversion. Moreover, transglycosylation harboring cellulases are also attracted as substitute of glycosyltransferase in synthesis of functional foods, nutraceuticals, or pharmaceuticals. Here, several interested transglycosylation harboring cellulases were summarized and assessed for the potential values in bioengineering application.

摘要

纤维素酶主要由外切葡聚糖酶、内切葡聚糖酶和β-葡萄糖苷酶组成,被认为是生物转化乙醇和其他生物燃料、饲料和药物的最重要的生物催化剂。水解产物抑制,特别是葡萄糖抑制,是纤维素生物转化过程中有待克服的关键难题之一。最近,一些研究表明,一些多功能纤维素酶(如 Umcel9y-1、Td2F2 和 CoGH1A)可以通过在纤维素水解过程中的转糖苷作用消除或缓解产物抑制。转糖苷作用赋予多功能纤维素酶对终产物(葡萄糖和/或纤维二糖)不敏感的特性,并为克服生物燃料转化的抑制提供了一种潜在的途径。此外,具有转糖苷作用的纤维素酶也被吸引作为糖基转移酶在功能性食品、营养保健品或药物合成中的替代品。本文总结了几种具有潜在应用价值的感兴趣的具有转糖苷作用的纤维素酶,并对其在生物工程应用中的潜在价值进行了评估。

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