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The development and use of an ELISA-based method to follow the distribution of cellulase monocomponents during the hydrolysis of pretreated corn stover

机译:开发和使用基于ELISA的方法跟踪预处理玉米秸秆水解过程中纤维素酶单组分的分布

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摘要

BackgroundIt is widely recognised that fast, effective hydrolysis of pretreated lignocellulosic substrates requires the synergistic action of multiple types of hydrolytic and some non-hydrolytic proteins. However, due to the complexity of the enzyme mixture, the enzymes interaction with and interference from the substrate and a lack of specific methods to follow the distribution of individual enzymes during hydrolysis, most of enzyme-substrate interaction studies have used purified enzymes and pure cellulose model substrates. As the enzymes present in a typical “cellulase mixture” need to work cooperatively to achieve effective hydrolysis, the action of one enzyme is likely to influence the behaviour of others. The action of the enzymes will be further influenced by the nature of the lignocellulosic substrate. Therefore, it would be beneficial if a method could be developed that allowed us to follow some of the individual enzymes present in a cellulase mixture during hydrolysis of more commercially realistic biomass substrates.
机译:背景技术众所周知,预处理的木质纤维素底物的快速有效水解需要多种类型的水解蛋白和某些非水解蛋白的协同作用。但是,由于酶混合物的复杂性,酶与底物的相互作用和干扰,以及在水解过程中缺乏跟踪各个酶分布的特定方法,大多数酶与底物相互作用的研究都使用了纯化的酶和纯纤维素模型基板。由于典型的“纤维素酶混合物”中存在的酶需要协同工作才能实现有效的水解,因此一种酶的作用可能会影响其他酶的行为。酶的作用将进一步受到木质纤维素底物性质的影响。因此,如果可以开发出一种方法,使我们能够在更现实的生物质底物水解过程中追踪纤维素酶混合物中存在的某些酶,那将是有益的。

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