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Recycling of cellulases in lignocellulosic hydrolysates using alkaline elution

机译:使用碱洗脱法回收木质纤维素水解物中的纤维素酶

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摘要

The recovery of cellulases from lignin, lignocellulosic hydrolysates and cellulose by alkaline washes at pH 9 and 10 was examined. The effect of the pH on the structural stability of purified Cel7A was analyzed by circular dichroism. Purified Cel7A showed conformational changes at pH 9 and 10 that were reversible at pH 4.8. Temperature influenced the enzymatic hydrolysis of wheat straw and may be critical for the efficiency of cellulase recycling from wheat straw hydrolysates. Operation at moderate temperatures (37 °C) resulted in a rate of saccharification 19% higher than that obtained at 50° C, improving cellulase recycling by 49%. Over 60% of the enzyme activity on the synthetic substrate 4-methylumbelliferyl-β-d-cellobioside (MUC) may be recovered by using a simple alkaline wash. This is thus a promising strategy for enzyme recycling that is simple to implement at industrial scale, economical and effective.
机译:考察了通过在pH 9和10下进行碱性洗涤从木质素,木质纤维素水解产物和纤维素中回收纤维素酶的情况。通过圆二色性分析pH对纯化的Cel7A的结构稳定性的影响。纯化的Cel7A在pH 9和10时显示构象变化,在pH 4.8时可逆。温度影响小麦秸秆的酶促水解,对于从小麦秸秆水解产物中回收纤维素酶的效率可能至关重要。在中等温度(37°C)下操作导致的糖化率比在50°C下获得的糖化率高19%,纤维素酶的回收率提高了49%。合成底物4-甲基伞形基-β-d-纤维二糖苷(MUC)上超过60%的酶活性可通过简单的碱洗回收。因此,这是酶回收的一种有前途的策略,其在工业规模上易于实施,经济且有效。

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