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Recombinant family 3 carbohydrate-binding module as a new additive for enhanced enzymatic saccharification of whole slurry from autohydrolyzed Eucalyptus globulus wood

机译:重组家庭3个碳水化合物结合模块作为一种新的添加剂,用于增强来自自动化的桉树菌液的整个浆料的酶促糖化

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摘要

By-products resulting from lignocellulosics pretreatment affect the digestibility of resulting whole slurries, but this can be minimized by additives supplementation. In this work, a family 3 carbohydrate-binding module (CBM3), recombinantly produced from Escherichia coli, was used as additive in the enzymatic hydrolysis of the whole slurry from autohydrolyzed Eucalyptus globulus wood (EGW). At the higher dosage used (30 mg/g(solids)), CBM3 led to an increase in glucose yield from 75 to 89%. A similar result was obtained for bovine serum albumin (BSA) (11% increase), which has a well-documented additive effect. CBM3 had no effect on the non-productive binding of enzymes, since it could not bind to EGW lignin, while it rapidly bound to cellulose, as shown by fluorescence microscopy. CBM3 is a valid additive for enhanced lignocellulosic saccharification and a valuable alternative to costly additives (e.g. polyethylene glycol) as it can be affordably produced from heterologous bacterium, thus contributing to more cost-efficient biomass valorization bioprocesses.
机译:木质纤维素含有预处理产生的副产物影响了总浆化的消化率,但这可以通过补充剂来最小化。在这项工作中,从大肠杆菌中重组生产的家庭3种碳水化合物结合模块(CBM3),用作酶水解的酶水解的酶法水解,从自动化的桉树玻璃液(EGW)中的整个浆液中。在使用的较高剂量(30mg / g(固体))中,CBM3导致葡萄糖产率的增加从75〜89%。获得类似的结果,用于牛血清白蛋白(BSA)(增加增加),其具有良好记录的添加剂效果。 CBM3对酶的非生产结合没有影响,因为它不能与EGW木质素结合,同时它迅速结合到纤维素中,如荧光显微镜所示。 CBM3是增强木质纤维素糖化的有效添加剂,以及昂贵的添加剂(例如聚乙二醇)的有价值的替代方案,因为它可以由异源细菌提供价格实惠的,因此有助于更具成本效益的生物质储层生物处理。

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