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Fast Identification of Thermostable Beta-Glucosidase Mutants on Cellobiose by a Novel Combinatorial Selection/Screening Approach

机译:通过新型组合选择/筛选方法快速鉴定纤维二糖上的热稳定β-葡萄糖苷酶突变体

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摘要

Engineering costly cellulases on natural cellulosic substrates is of importance for emerging biomass-based biorefineries. Directed enzyme evolution is becoming a popular tool, but identification of desired mutants from a large mutant library remains challenging sometimes. In this work, we demonstrated a novel combinatorial selection/screening strategy for finding thermostable beta-glucosidase on its natural substrate-cellobiose. First, selection was conducted through complementation of beta-glucosidase for non-cellobiose-utilizing Escherichia coli so that only the cells expressing active beta-glucosidase can grow on a M9 synthetic medium with cellobiose as the sole carbon source (selection plate). Second, the clones on the selection plates were duplicated by using nylon membranes. After heat treatment, the nylon membranes were overlaid on M9/cellobiose screening plates so that remaining activities of thermostable beta-glucosidase mutants hydrolyzed cellobiose on the screening plates to glucose. Third, the growth of an indicator E. coli strain that call Utilize glucose but n ot cellobiose on the screening plates helped detect the thermostable beta-glucosidase mutants oil the selection plates. Several thermostable mutants were identified from a random mutant library of the Paenibacillus polymyxa beta-glucosidase. The most thermostable mutant A17S had an 11-fold increase in the half-life of thermoinactivation at 50 degrees C. Biotechnol. Bioeng. 2009;103: 1087-1094.
机译:在天然纤维素底物上设计昂贵的纤维素酶对于新兴的基于生物质的生物精炼厂至关重要。定向酶进化已成为一种流行的工具,但是从大型突变体文库中鉴定所需突变体有时仍然具有挑战性。在这项工作中,我们展示了一种新颖的组合选择/筛选策略,可用于在其天然底物纤维二糖上发现热稳定的β-葡萄糖苷酶。首先,通过对β-葡萄糖苷酶的补充来补充非纤维二糖利用性大肠杆菌,从而只有表达活性β-葡萄糖苷酶的细胞才能在以纤维二糖为唯一碳源的M9合成培养基上生长(选择板)。第二,使用尼龙膜复制选择板上的克隆。热处理后,将尼龙膜覆盖在M9 /纤维二糖筛选板上,以使热稳定的β-葡萄糖苷酶突变体的剩余活性将筛选板上的纤维二糖水解为葡萄糖。第三,在筛选平板上生长的指示性大肠杆菌菌株的生长称为利用葡萄糖,但没有纤维二糖,有助于检测筛选平板上的热稳定β-葡萄糖苷酶突变体。从多粘芽孢杆菌β-葡糖苷酶的随机突变体文库中鉴定出几个热稳定突变体。最热稳定的突变体A17S在50摄氏度下的热失活半衰期增加了11倍。Biotechnol。生恩2009; 103:1087-1094。

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