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首页> 外文期刊>FEBS Open Bio >Immobilization of the extracellular recombinant Lucky9 xylanase from Bacillus?subtilis enhances activity at high temperature and pH
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Immobilization of the extracellular recombinant Lucky9 xylanase from Bacillus?subtilis enhances activity at high temperature and pH

机译:从芽孢杆菌中固定细胞外重组算法9木聚糖酶?枯草芽孢杆菌在高温和pH下增强活性

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In the paper industry, chlorine is often used to treat the pulp for bleaching. After pulping, a large amount of xylan is present in the fiber. Xylanase can be used to degrade xylan in an eco‐friendly process called biobleaching, which can help minimize the usage of chlorine in the delignification process. However, a bottleneck in the adoption of biobleaching is the cost of xylanase and the requirement that xylanase be active and stable at extreme conditions. Here, we investigated whether using sodium alginate beads to immobilize an extracellular xylanase from Bacillus?subtilis (Lucky9) can reduce the potential cost of enzyme usage. The optimal pH and the activity of the immobilized enzyme were increased at optimal temperature compared with the free enzyme. In addition, immobilized xylanase was shown to be more stable than free xylanase. The results of this study suggest that the immobilized xylanase has potential applications in the biobleaching industry.
机译:在造纸业中,氯经常用于治疗浆料进行漂白。在制浆后,纤维中存在大量的木聚糖。木聚糖酶可用于降解Xylan在一种称为生物博布林的环保过程中,这有助于最大限度地减少氯在脱烃过程中的使用。然而,采用生物博布林的瓶颈是木聚糖酶的成本和木聚糖酶在极端条件下活跃和稳定的要求。在这里,我们研究了藻酸钠珠子是否从芽孢杆菌中固定细胞外木聚糖酶?枯草芽孢杆菌(Lucky9)可以降低酶使用的潜在成本。与游离酶相比,在最佳温度下,最佳pH和固定化酶的活性增加。此外,示出了固定化的木聚糖酶比游离木聚糖酶更稳定。该研究的结果表明,固定化的木聚糖酶在生物漂白工业中具有潜在的应用。

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