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Improved Enzyme Catalytic Characteristics upon Glutaraldehyde Cross-Linking of Alginate Entrapped Xylanase Isolated from Aspergillus flavus MTCC 9390

机译:从黄曲霉MTCC 9390分离藻酸盐截留的木聚糖酶的戊二醛交联反应改善的酶催化特性

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摘要

Purified fungal xylanase was entrapped in alginate beads. Its further cross-linking using glutaraldehyde resulted in large enzyme aggregates which may function as both a catalyst and a support material for numerous substrate molecules. Enzyme cross-linking presented a negative impact on enzyme leaching during repeated washings and recovery of enzyme activity was substantial after twelve cycles of usage. The entrapment followed by cross-linking doubled the total bound activity and also greatly improved the enzyme stability at extreme chemical environment. The wide pH stability, better thermo- and storage stability, lowered K m value, and protection from some metal ions are salient achievements of present immobilization. The study shows the efficacy, durability, and sustainability of immobilized catalytic system which could be efficiently used for various juice processing operations.
机译:将纯化的真菌木聚糖酶截留在藻酸盐珠中。其使用戊二醛的进一步交联产生了大的酶聚集体,其可充当多种底物分子的催化剂和载体材料。在反复洗涤过程中,酶交联对酶的浸出有负面影响,在使用十二个周期后,酶活性的恢复是可观的。截留后进行交联使总结合活性加倍,并且在极端化学环境下也大大提高了酶的稳定性。广泛的pH稳定性,更好的热稳定性和储存稳定性,更低的K m值以及对某些金属离子的保护是目前固定化的重要成就。研究表明固定化催化系统的功效,耐用性和可持续性,可以有效地用于各种果汁加工操作。

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