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Endoglucanases: insights into thermostability for biofuel applications

机译:内切葡聚糖酶:对生物燃料应用热稳定性的见解

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摘要

Obtaining bioethanol from cellulosic biomass involves numerous steps, among which the enzymatic conversion of the polymer to individual sugar units has been a main focus of the biotechnology industry. Among the cellulases that break down the polymeric cellulose are endoglucanases that act synergistically for subsequent hydrolytic reactions. The endoglucanases that have garnered relatively more attention are those that can withstand high temperatures, i.e., are thermostable. Although our understanding of thermostability in endoglucanases is incomplete, some molecular features that are responsible for increased thermostability have been recently identified. This review focuses on the investigations of endoglucanases and their implications for biofuel applications.
机译:从纤维素生物质中获得生物乙醇涉及许多步骤,其中将聚合物酶促转化为单个糖单元一直是生物技术工业的主要重点。在分解聚合物纤维素的纤维素酶中,有内切葡聚糖酶,其协同作用用于随后的水解反应。受到相对更多关注的内切葡聚糖酶是那些可以承受高温,即是热稳定的。尽管我们对内切葡聚糖酶的热稳定性的理解还不完全,但最近已发现一些导致热稳定性增加的分子特征。这篇综述着重于内切葡聚糖酶的研究及其对生物燃料应用的影响。

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