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Advances in improving the performance of cellulase in ionic liquids for lignocellulose biorefinery

机译:提高木质纤维素生物颗粒中纤维素酶纤维素酶的性能的研究进展

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摘要

Ionic liquids (ILs) have been considered as a class of promising solvents that can dissolve lignocellulosic biomass and then provide enzymatic hydrolyzable holocellulose. However, most of available cellulases are completely or partially inactivated in the presence of even low concentrations of ILs. To more fully exploit the benefits of ILs to lignocellulose biorefinery, it is critical to improve the compatibility between cellulase and ILs. Various attempts have been made to screen natural IL-tolerant cellulases from different microhabitats. Several physical and chemical methods for stabilizing cellulases in ILs were also developed. Moreover, recent advances in protein engineering have greatly facilitated the rational engineering of cellulases by site-directed mutagenesis for the IL stability. This review is aimed to provide the first detailed overview of the current advances in improving the performance of cellulase in non-natural IL environments. New ideas from the most representative progresses and technical challenges will be summarized and discussed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:离子液体(ILS)被认为是一类可以溶解木质纤维素生物质的有前途的溶剂,然后提供酶水解的全纤维素。然而,在甚至低浓度的ILS存在下,大多数可用的纤维素酶完全或部分地灭活。更充分利用ILS对木质纤维素生物遗料的益处,提高纤维素酶和ILS之间的相容性至关重要。已经进行了各种尝试,用于筛选来自不同微藻的天然IL耐受性纤维素酶。还开发了用于稳定ILS中纤维素酶的几种物理和化学方法。此外,蛋白质工程的最近进步大大促进了通过定点诱变的IL稳定性的纤维素酶的合理工程。该审查旨在提供目前提高非天然IL环境中纤维素酶的性能的第一次详细概述。将总结和讨论来自最具代表性进展和技术挑战的新思路。 (c)2015 Elsevier Ltd.保留所有权利。

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