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Substrate-velocity relationships for the Trichoderma viride cellulase-catalyzed hydrolysis of cellulose.

机译:底物速度与木霉绿色纤维素酶催化纤维素水解的关系。

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摘要

The influence of substrate and enzyme concentrations on the rate of saccharification of two defined insoluble cellulose substrates, Avicel (FMC Corp., Philadelphia, Pa.) and Solka-Floc (James River Co., Berlin, N.H.), by the cellulase enzyme system of Trichoderma viride was evaluated. In the assays, enzyme concentrations ranging from 0.004 to 0.016 IU/ml and substrate concentrations up to 10% (wt/vol) were used. Analysis by initial velocity methods found the maximum velocity of saccharification to be nearly equivalent for the two substrates and the Km for the two substrates to be of a similar magnitude, i.e., 0.20% (wt/vol) for Solka-Floc and 0.63% (wt/vol) for Avicel. Studies in which relatively high substrate concentrations (greater than 15 times the Km) were used demonstrated that the enzyme exhibited very different apparent substrate inhibition properties for the two substrates. The rate of saccharification of Avicel at relatively high substrate concentrations was up to 35% lower than the maximum rate which was observed at lower substrate concentrations. The Avicel concentration corresponding to the maximum rate of saccharification was dependent on the enzyme concentration. In contrast to the results with Avicel, the enzyme did not exhibit substrate inhibition with the Solka-Floc substrate. Potential differences in the degree of substrate inhibition with different substrates, as reported here, are particularly relevant to the experimental design of comparative studies.
机译:底物和酶浓度对两种确定的不溶性纤维素底物,即纤维素酶系统的糖化速率的影响,两种底物是不溶的纤维素底物,Avicel(FMC Corp.,费城,宾夕法尼亚州)和Solka-Floc(James River Co.,柏林,NH)。评估了木霉木霉的菌落数。在测定中,使用的酶浓度范围为0.004至0.016 IU / ml,底物浓度最高为10%(wt / vol)。通过初始速度方法的分析发现,两种底物的最大糖化速度几乎相等,而两种底物的Km具有相似的幅度,即Solka-Floc的最大糖化速度为0.20%(wt / vol),0.63%( wt / vol)。使用较高底物浓度(大于Km的15倍)的研究表明,该酶对两种底物表现出截然不同的表观底物抑制特性。在较高底物浓度下,Avicel的糖化率比在较低底物浓度下观察到的最大速度低多达35%。对应于最大糖化速率的Avicel浓度取决于酶浓度。与Avicel的结果相反,该酶对Solka-Floc底物没有表现出底物抑制作用。如本文报道的,不同底物对底物抑制程度的潜在差异与比较研究的实验设计特别相关。

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