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Biotechnological Valorization of Proteases: From Hyperproduction to Industrial Exploitation-A Review

机译:蛋白酶的生物技术平衡:从超量生产到工业利用-综述

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摘要

From the last few years, due to the inadequacies of, in practice, pbysiochemical methods, growing scientific awareness, increasing ecological/environmental concerns, and legal boundaries, many industries are currently pursuing enzyme-based approaches for developing green chemistry technologies. Proteases, responsible for proteolysis, are vitally important for life and engaged with vast industrial applications as they are eco-friendly in nature. According to the bio-informatics, protease constitutes approximately 2% of the total human genome, whereas extracellular protease is a highly exploitable enzyme in various industries due to its robust nature, and commercially available with the trade name of Savinase, subtilisin Carlsberg, and subtilisin BPN~1. Genetic modifications and immobilization revealed a novel protease production strategy with superior catalytic efficacy and improved constancy toward pH or temperature. A vast literature exists on biological activities of protease but only a few reports are available on the nutritional effects and the pbysiochemical parameters for fermentative production of protease, which offers new possibilities and potentials to fulfill the industrial demands of enzymes. This article focuses on the updated tidings on nutritional effects, pbysiochemical parameters, biochemical aspects, and strain improvement methodologies for byperproduction of protease. This article also addresses existing challenges and tentative solutions for successful utilization of protease for industrial applications.
机译:从过去的几年开始,由于实际中粉煤化学方法的不足,科学认识的提高,对生态/环境问题的日益关注以及法律界限的限制,许多行业目前正在寻求基于酶的方法来开发绿色化学技术。蛋白酶负责蛋白水解,因为它们对自然环境友好,因此对生命至关重要,并参与广泛的工业应用。根据生物信息学的观点,蛋白酶约占整个人类基因组的2%,而细胞外蛋白酶由于其强大的性质而在各个行业中是一种可高度利用的酶,并且可以商品名Savinase,枯草杆菌蛋白酶嘉士伯和枯草杆菌蛋白酶商购BPN〜1。基因修饰和固定化揭示了一种新型的蛋白酶生产策略,该策略具有优异的催化功效和对pH或温度的恒定性。关于蛋白酶的生物学活性存在大量文献,但是关于蛋白酶发酵生产的营养作用和营养化学参数的报道很少,这为满足酶的工业需求提供了新的可能性和潜力。本文重点介绍有关副产物的营养效应,粉体化学参数,生化方面和菌株改良方法的最新信息。本文还讨论了成功地将蛋白酶用于工业应用的现有挑战和解决方案。

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