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首页> 外文期刊>Chemistry central journal >Enhanced recovery of alkaline protease from fish viscera by phase partitioning and its application
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Enhanced recovery of alkaline protease from fish viscera by phase partitioning and its application

机译:相分配促进鱼类内脏碱性蛋白酶的回收及其应用

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Background Too many different protein and enzyme purification techniques have been reported, especially, chromatographic techniques. Apart from low recovery, these multi-step methods are complicated, time consuming, high operating cost. So, alternative beneficially methods are still required. Since, the outstanding advantages of aqueous two phase system (ATPS) such as simple, low cost, high recovery and scalable, ATPS have been used to purify various enzymes. To improve purification efficiency, parameters affected to enzyme recovery or purity was investigated. The objectives of the present study were to optimize of alkaline protease recovery from giant catfish fish viscera by using ATPS and to study of hydrolytic patterns against gelatin. Results Using 70% (w/w) crude enzyme extract (CE) in system (15% PEG2000-15% sodium citrate) provided the highest recovery, PF and KE. At unmodified pH (8.5) gave the best recovery and PF with compare to other pHs of the system. The addition of 1% (w/w) NaCl showed the recovery (64.18%), 3.33-fold and 15.09 of KE compared to the system without NaCl. After addition of 10% (w/w) sodium citrate in the second ATPS cycle, the highest protease recovery (365.53%) and PF (11.60-fold) were obtained. Thus, the top phase from the system was subjected to further studied. The protein bands with molecular weights (MWs) of 20, 24, 27, 36, 94 and 130 kDa appeared on the protein stained gel and also exhibited clear zone on casein-substrate gel electrophoresis. The β, α1, α2 of skin gelatin extensively degraded into small molecules when treated with 10 units of the extracted alkaline protease compared to those of the level of 0.21 units of Flavourzyme. Conclusions Repetitive ATPS is the alternative strategy to increase both recovery and purity of the alkaline protease from farmed giant catfish viscera. Extracted alkaline protease exposed very high effectiveness in gelatin hydrolysis. It is suggested that the alkaline protease from this fish viscera can further be used in protein hydrolysate production.
机译:背景技术已经报道了太多不同的蛋白质和酶纯化技术,尤其是色谱技术。除了回收率低外,这些多步骤方法还很复杂,费时,运行成本高。因此,仍然需要替代的有益方法。由于水相两相系统(ATPS)的突出优势(例如简单,低成本,高回收率和可扩展性),ATPS已用于纯化各种酶。为了提高纯化效率,研究了影响酶回收率或纯度的参数。本研究的目的是通过使用ATPS优化从cat鱼鱼类内脏中碱性蛋白酶的回收率,并研究针对明胶的水解模式。结果在系统中使用70%(w / w)的粗酶提取物(CE)(15%PEG2000-15%柠檬酸钠)可提供最高的回收率,PF和KE。与系统的其他pH相比,在未改性的pH(8.5)下,回收率和PF最佳。与没有NaCl的系统相比,添加1%(w / w)的NaCl显示出KE的回收率(64.18%),3.33倍和15.09。在第二个ATPS循环中添加10%(w / w)柠檬酸钠后,可获得最高的蛋白酶回收率(365.53%)和PF(11.60倍)。因此,对该系统的顶层进行了进一步研究。分子量(MWs)为20、24、27、36、94和130 kDa的蛋白带出现在蛋白染色的凝胶上,并且在酪蛋白-底物凝胶电泳上也显示出清晰的区域。与0.21单位的Flavourzyme水平相比,用10单位提取的碱性蛋白酶处理时,皮肤明胶的β,α1,α2广泛降解为小分子。结论重复性ATPS是提高养殖giant鱼内脏碱性蛋白酶的回收率和纯度的另一种策略。提取的碱性蛋白酶在明胶水解中暴露出非常高的有效性。建议将来自该鱼内脏的碱性蛋白酶进一步用于蛋白质水解产物的生产。

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