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Linking Hydrolysis Performance to Trichoderma reesei Cellulolytic Enzyme Profile

机译:将水解性能与里氏木霉纤维素酶分析相关联

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摘要

expresses a large number of enzymes involved in lignocellulose hydrolysis and the mechanism of how these enzymes work together is too complex to study by traditional methods, e.g. by spiking with single enzymes and monitoring hydrolysis performance. In this study a multivariate approach, partial least squares regression, was used to see if it could help explain the correlation between enzyme profile and hydrolysis performance. Diverse enzyme mixtures were produced by Rut-C30 by exploiting various fermentation conditions and used for hydrolysis of washed pretreated corn stover as a measure of enzyme performance. In addition, the enzyme mixtures were analyzed by liquid chromatography - tandem mass spectrometry to identify and quantify the different proteins. A multivariate model was applied for prediction of enzyme performance based on the combination of different proteins present in an enzyme mixture. The multivariate model was used for identification of candidate proteins that are correlated to enzyme performance on pretreated corn stover. A very large variation in hydrolysis performance was observed and this was clearly caused by the difference in fermentation conditions. Besides β-glucosidase, the multivariate model identified several xylanases, Cip1 and Cip2 as relevant proteins to study further.
机译:大肠杆菌表达大量参与木质纤维素水解的酶,这些酶如何协同作用的机制太复杂,无法通过传统方法研究,例如通过掺入单一酶并监测水解性能。在这项研究中,采用多元最小二乘回归分析方法,看是否可以帮助解释酶图谱与水解性能之间的相关性。 Rut-C30通过利用各种发酵条件生产了多种酶混合物,并将其用于洗涤预处理过的玉米秸秆的水解,以此作为酶性能的量度。另外,通过液相色谱-串联质谱法分析酶混合物,以鉴定和定量不同的蛋白质。基于存在于酶混合物中的不同蛋白质的组合,将多元模型用于预测酶性能。该多元模型用于鉴定与预处理玉米秸秆上的酶性能相关的候选蛋白质。观察到水解性能的非常大的变化,这显然是由于发酵条件的差异引起的。除β-葡萄糖苷酶外,多变量模型还鉴定了几种木聚糖酶,Cip1和Cip2作为相关蛋白,需要进一步研究。

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