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Plant Carbohydrate Binding Module Enhances Activity of Hybrid Microbial Cellulase Enzyme

机译:植物碳水化合物结合模块提高了杂交微生物纤维素酶的活性

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摘要

A synthetic, highly active cellulase enzyme suitable for in planta production may be a valuable tool for biotechnological approaches to develop transgenic biofuel crops with improved digestibility. Here, we demonstrate that the addition of a plant derived carbohydrate binding module (CBM) to a synthetic glycosyl hydrolase improved the activity of the hydrolase in releasing sugar from plant biomass. A CEL-HYB1-CBM enzyme was generated by fusing a hybrid microbial cellulase, CEL-HYB1, with the CBM of the tomato (Solanum lycopersicum) SlCel9C1 cellulase. CEL-HYB1 and CEL-HYB1-CBM enzymes were produced in vitro using Pichia pastoris and the activity of these enzymes was tested using carboxymethylcellulose, MUC, and native crystalline cellulose assays. The presence of the CBM substantially improved the endoglucanase activity of CEL-HYB1, especially against the native crystalline cellulose encountered in Sorghum bicolor plant cell walls. These results indicate that addition of an endogenous plant derived CBM to cellulase enzymes may enhance hydrolytic activity.
机译:适用于植物生产的合成的高活性纤维素酶可能是生物技术方法开发具有改善的消化率的转基因生物燃料作物的宝贵工具。在这里,我们证明向合成糖基水解酶中添加植物衍生的碳水化合物结合模块(CBM)可以提高水解酶从植物生物质中释放糖的活性。通过将杂种微生物纤维素酶CEL-HYB1与番茄(Solanum lycopersicum)SlCel9C1纤维素酶的CBM融合来生成CEL-HYB1-CBM酶。使用巴斯德毕赤酵母在体外产生CEL-HYB1和CEL-HYB1-CBM酶,并使用羧甲基纤维素,MUC和天然结晶纤维素测定法测试这些酶的活性。 CBM的存在显着改善了CEL-HYB1的内切葡聚糖酶活性,特别是针对高粱双色植物细胞壁中遇到的天然结晶纤维素。这些结果表明,将内源植物衍生的CBM添加到纤维素酶中可以增强水解活性。

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