Protein Research Department, Genetic Engineering and Biotechnology Research Institute (GEBRI), City of Scientific Research and Technological Applications (SRTA-City), New Borg El-Arab City, P.O. Box: 21934, Alexandria, Egypt.
Electronic Materials Researches Department, Advanced Technology and New Materials Research Institute (ATNMRI), City of Scientific Research and Technological Applications (SRTA-City), New Borg El-Arab City, P.O. Box: 21934, Alexandria, Egypt.
Int J Biol Macromol. 2020 Jul 1;154:567-583. doi: 10.1016/j.ijbiomac.2020.03.116. Epub 2020 Mar 16.
Enormous masses of keratinous wastes are annually accumulated in the environment as byproducts of poultry processing and agricultural wastes. Keratin is a recalcitrant fibrous protein, which represents the major constituent of various keratin-rich wastes, which released into the environment in the form of feathers, hair, wool, bristle, and hooves. Chemical treatment methods of these wastes resulted in developing many hazardous gases and toxins to the public health, in addition to the destruction of several amino acids. Accordingly, microbial keratinases have been drawing much interest as an eco-friendly approach to convert keratinous wastes into valuable products. Numerous keratinolytic microorganisms have been identified, which revealed the competence to hydrolyze keratins into peptides and amino acids. Several types of keratinolytic proteases have been produced that possess diverse biochemical characteristics, conferring them the versatility for implementing in multifarious applications such as detergents, leather and textile industries, animal feeding, and production of bio-fertilizers, in addition to medical and pharmaceutical treatments. This review article emphasizes the significance of keratinases and keratinase based-products via comprehensive insights into the keratin structure, diversity of keratinolytic microorganisms, and mechanisms of keratin hydrolysis. Furthermore, we discuss the biochemical properties of the produced keratinases and their feasible applications in diverse disciplines.
大量角蛋白废物作为家禽加工和农业废物的副产品,每年都在环境中积累。角蛋白是一种难降解的纤维状蛋白质,是各种富含角蛋白废物的主要成分,这些废物以羽毛、毛发、羊毛、鬃毛和蹄子的形式释放到环境中。这些废物的化学处理方法导致许多有害气体和毒素释放到公共健康中,此外还破坏了几种氨基酸。因此,微生物角蛋白酶作为一种环保的方法来将角蛋白废物转化为有价值的产品,引起了广泛的关注。已经鉴定出许多角蛋白降解微生物,它们具有水解角蛋白成肽和氨基酸的能力。已经产生了几种类型的角蛋白酶,它们具有不同的生化特性,使它们具有多功能性,可以应用于各种领域,如洗涤剂、皮革和纺织工业、动物饲料、生物肥料的生产,以及医疗和制药治疗。本文通过对角蛋白结构、角蛋白降解微生物的多样性和角蛋白水解机制的综合分析,强调了角蛋白酶和基于角蛋白酶的产品的重要性。此外,我们还讨论了所产生的角蛋白酶的生化特性及其在不同学科中的可行应用。