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Biological pretreatment of cellulose: Enhancing enzymatic hydrolysis rate using cellulose-binding domains from cellulases

机译:纤维素的生物预处理:使用纤维素酶中的纤维素结合域提高酶解速率

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摘要

In this study, cellulose-binding domains (CBDs) of cellulases from Trichoderma reesei were used in a pretreatment step and were found to effectively reduce the crystallinity of cellulose (both Avicel and fibrous cellulose). This, in turn, led to higher glucose concentrations (up to 25% increase) in subsequent hydrolysis of cellulose using a mixture of cellulases and without the need for any intermediate purification step. CBDs were shown to be active in a range of temperatures (up to 50. °C), while cellulase hydrolytic activity was greatly reduced after incubation at 50. °C. This was explained by retention of full binding capacity after incubation at 50. °C for 15 h. Our findings suggest that CBDs may be a valuable tool in pretreating cellulose and eventually afford faster enzymatic conversion of cellulose to glucose, thus contributing to more affordable processes in the production of biofuels.
机译:在这项研究中,来自里氏木霉的纤维素酶的纤维素结合域(CBD)被用于预处理步骤,被发现可以有效降低纤维素(Avicel和纤维状纤维素)的结晶度。反过来,这导致随后使用纤维素酶的混合物水解纤维素时,葡萄糖浓度更高(增加高达25%),而无需任何中间纯化步骤。 CBDs在一定温度范围(最高50.°C)下具有活性,而在50.°C下孵育后,纤维素酶的水解活性大大降低。这可以通过在50°C下孵育15小时后保留完整的结合能力来解释。我们的发现表明,CBD可能是预处理纤维素的有价值的工具,并最终使纤维素更快地酶促转化为葡萄糖,从而为生物燃料的生产提供了更多可承受的过程。

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