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Affinity Foam Fractionation of Trichoderma Cellulase

机译:木霉纤维素酶的亲和泡沫分离

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Cellulase could not be selectively collected from fermentation broth by simple foam fractionation, because of the presence of other more surface-active compounds. A new approach of affinity foam fractionation was investigated for improvement. A hardwood hydrolysate (containing cellulose oligomers, substrates to cellulase) and two substrate analogs, i.e., carboxymethyl cellulose (CMC) and xylan hydrolysate, were added before the foaming process. The substrates and substrate analogs were indeed found to bind the cellulase selectively and form more hydrophobic complexes that partition more readily onto bubble surfaces. In this study, the effects of the type and concentration of substrate/analog as well as the presence of cells at different growth stages were examined. The foam fractionation properties evaluated included foaming speed, foam stability, foamate volume, and enrichment of filter paper unit (FPU) and individual cellulase components (i.e., endoglucanases, exoglucanases, and β-glucosidases). Depending on the broth and substrate/analog employed, the foamate FPU could be more than fourfold higher than the starting broth FPU. Addition of substrate/analog also deterred the enrichment of other extracellular proteins, resulting in the desired cellulase purification in the foamate. The value of E/P (enzyme activity-FPU/g/L of proteins) in the foamate reached as high as 18, from a lactose-based fermentation broth with original E/P of 5.6. Among cellulase components, exoglucanases were enriched the most and β-glucosidases the least. The study with CMC of different molecular weights (MW) and degrees of substitution (DS) indicated that the CMC with low DS and high MW performed better in cellulase foam fractionation.
机译:由于存在其他更具表面活性的化合物,无法通过简单的泡沫分离从发酵液中选择性地收集纤维素酶。研究了亲和泡沫分馏的新方法以进行改进。在发泡过程之前,加入硬木水解产物(包含纤维素低聚物,纤维素酶的底物)和两种底物类似物,即羧甲基纤维素(CMC)和木聚糖水解物。实际上发现底物和底物类似物选择性地结合纤维素酶并形成更多的疏水复合物,其更容易分配到气泡表面上。在这项研究中,研究了底物/类似物的类型和浓度以及不同生长阶段细胞的存在的影响。评估的泡沫分离特性包括起泡速度,泡沫稳定性,泡沫体积,滤纸单元(FPU)和单个纤维素酶成分(即内切葡聚糖酶,外切葡聚糖酶和β-葡萄糖苷酶)的富集。取决于所用的肉汤和底物/类似物,泡沫状FPU可能比起始肉汤FPU高四倍以上。底物/类似物的添加还阻止了其他细胞外蛋白的富集,从而在泡沫物中纯化纤维素酶。从原始E / P为5.6的基于乳糖的发酵液中,泡沫物中的E / P值(酶活性-FPU / g / L蛋白质)高达18。在纤维素酶成分中,葡聚糖酶富集最多,而β-葡萄糖苷酶富集最少。使用不同分子量(MW)和取代度(DS)的CMC进行的研究表明,低DS和高MW的CMC在纤维素酶泡沫分离中表现更好。

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