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Protease-A Versatile and Ecofriendly Biocatalyst with Multi-Industrial Applications: An Updated Review

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CATALYSIS LETTERS
卷 151, 期 2, 页码 307-323

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SPRINGER
DOI: 10.1007/s10562-020-03316-7

关键词

Proteases; Protein engineering; Immobilization; Catalytic properties; Industrial applications

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Proteases, as important industrial biocatalysts, are mainly produced from microbial sources due to their fast production rate and limited cultivation requirement. They have a wide range of applications in industries such as food, detergent, leather, pharmaceuticals, etc. Improvements in catalytic properties through protein engineering and immobilization strategies are being pursued, while the search for novel enzyme sources continues to meet the increasing demands for industrial exploitation.
Proteases are important industrial biocatalysts that constitute the largest group of enzymes acting as proteinases, peptidases, and amidases with a broad range of industrial applications. In this review, particular attention has been given to comprehensively scrutinize the proteases. After the succinct introduction, classification of proteases as exopeptidases (amino and carboxy proteases) and endopeptidases (serine, aspartic, cysteine, and metalloproteases), sources of alkaline, acidic and neutral protease like animal, plant and microbial sources along with the multi-industrial applications have been dissertated. Now a day's, mostly proteases, which are present in the market, are produced from microbial sources because of the fast production rate and the limited requirement of cultivation. In addition to this, a critique on the applications of proteases in food, detergent, leather, pharmaceutical, cosmetics, silk degumming, silver recovery, chemical industry, and wastewater treatment industries is also concisely addressed. Finally, protein engineering and immobilization strategies to improve the catalytic properties of protease are thoroughly vetted. The quest for novel sources of protease enzyme has been encouraged to fulfill their ever-increasing demands for industrial exploitation. [GRAPHICS] .

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