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Chloride Activated Halophilic α-Amylase from Marinobacter sp. EMB8: Production Optimization and Nanoimmobilization for Efficient Starch Hydrolysis

机译:Marinobacter sp。的氯化物活化的嗜盐α-淀粉酶。 EMB8:有效淀粉水解的生产优化和纳米固定化

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摘要

Halophiles have been perceived as potential source of novel enzymes in recent years. The interest emanates from their ability to catalyze efficiently under high salt and organic solvents. Present work encompasses production optimization and nanoimmobilization of an α-amylase from moderately halophilic Marinobacter sp. EMB8. Media ingredients and culture conditions were optimized by “one-at-a-time approach.” Starch was found to be the best carbon source at 5% (w/v) concentration. Glucose acted as catabolic repressor for amylase production. Salt proved critical for amylase production and maximum production was attained at 5% (w/v) NaCl. Optimization of various culture parameters resulted in 48.0 IU/mL amylase production, a 12-fold increase over that of unoptimized condition (4.0 IU/mL). α-Amylase was immobilized on 3-aminopropyl functionalized silica nanoparticles using glutaraldehyde as cross-linking agent. Optimization of various parameters resulted in 96% immobilization efficiency. Starch hydrolyzing efficiency of immobilized enzyme was comparatively better. Immobilized α-amylase retained 75% of its activity after 5th cycle of repeated use.
机译:近年来,嗜盐菌被认为是新型酶的潜在来源。兴趣来自它们在高盐和有机溶剂下有效催化的能力。目前的工作包括中等嗜盐Marinobacter sp。的α-淀粉酶的生产优化和纳米固定化。 EMB8。通过“一次一次的方法”优化了培养基成分和培养条件。发现淀粉是浓度为5%(w / v)的最佳碳源。葡萄糖充当淀粉酶生产的分解代谢阻遏物。盐被证明对淀粉酶的生产至关重要,在5%(w / v)NaCl的条件下可以达到最大产量。各种培养参数的优化导致产生48.0µIU / mL的淀粉酶,比未优化条件(4.0µIU / mL)的增加12倍。使用戊二醛作为交联剂,将α-淀粉酶固定在3-氨丙基官能化的二氧化硅纳米粒子上。各种参数的优化导致96%的固定效率。固定化酶的淀粉水解效率相对较好。在重复使用的第5个周期后,固定化的α-淀粉酶保留了其活性的75%。

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