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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Screening of cellulases for biofuel production:Online monitoring of the enzymatic hydrolysis of insoluble cellulose using high-throughput scattered light detection
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Screening of cellulases for biofuel production:Online monitoring of the enzymatic hydrolysis of insoluble cellulose using high-throughput scattered light detection

机译:筛选用于生产生物燃料的纤维素酶:使用高通量散射光检测在线监测不溶性纤维素的酶促水解

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摘要

A new prospective cellulase assay simultaneously combining high-throughput, online analysis and insoluble cellulosic substrates is described. The hydrolysis of three different insoluble cellulosic substrates, catalysed by a commercial cellulase preparation from Trichoderma reesei (Celluclast), was monitored using the BioLector-allowing online monitoring of scattered light intensities in a continuously shaken microtiter plate. Cellulase activities could be quantitatively assayed using the BioLector. At low cellulase/cellulose ratios, the Michaelis-Menten parameters ofthe cellulase mixture were mainly affected by the crystallinity index of the cellulose. Here, the apparent maximum cellulase activities inversely correlated with the crystallinity index of the cellulose. At high cellulase/cellulose ratios the particle size of the cellulose, defining the external surface area accessible to the cellulases, was the key determining factor for cellulase activity. The developed technique was also successfully applied to evaluate the pH optimum of cellulases. Moreover, the non-hydrolytic deagglomeration of cellulose particles was investigated, for the first time, using high-throughput scattered light detection. In conclusion, this cellulase assay ideally links high-throughput, online analysis and realistic insoluble cellulosic substrates in one simple system. It will considerably simplify and accelerate fundamental research on cellulase screening.
机译:描述了同时结合高通量,在线分析和不溶性纤维素底物的新型前瞻性纤维素酶测定方法。使用BioLector监控了三种不同的不溶性纤维素底物的水解,这些水解是由里氏木霉(Celluclast)的商业纤维素酶制剂催化的,从而允许在连续摇动的微量滴定板中在线监测散射光强度。可以使用BioLector定量测定纤维素酶的活性。在低纤维素酶/纤维素比的情况下,纤维素酶混合物的Michaelis-Menten参数主要受纤维素的结晶度指数影响。在此,表观最大纤维素酶活性与纤维素的结晶度指数成反比。在高纤维素酶/纤维素比的情况下,决定纤维素酶可及的外表面积的纤维素的粒径是决定纤维素酶活性的关键因素。所开发的技术也成功地用于评估纤维素酶的最适pH。此外,首次使用高通量散射光检测技术对纤维素颗粒的非水解解聚进行了研究。总之,这种纤维素酶测定理想地在一个简单的系统中将高通量,在线分析和现实的不溶性纤维素底物联系在一起。它将大大简化和加速纤维素酶筛选的基础研究。

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