2020
DOI: 10.1186/s13068-020-01700-4
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Biotransformation of keratin waste to amino acids and active peptides based on cell-free catalysis

Abstract: Background: Keratin is the primary constituent of the vertebrate epidermis and epidermal appendages, as well as the main waste product generated during poultry processing from feathers, hair, scales, nails, etc. Keratin is generally hard, stubborn and difficult to hydrolyze; however, it is also inexpensive and contains more than 85% protein. Currently, tens of millions of tons of keratin waste are produced each year worldwide; however, no effective methods for the recovery of keratin waste have been reported t… Show more

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Cited by 49 publications
(51 citation statements)
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“…The remaining operations were the same as in the experimental group. In this study, one unit of keratinase activity was defined as an absorbance value increase of 0.001 units per minute at 660 nm (Peng et al, 2020).…”
Section: The General Procedures Of Keratinase Activity Assaymentioning
confidence: 99%
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“…The remaining operations were the same as in the experimental group. In this study, one unit of keratinase activity was defined as an absorbance value increase of 0.001 units per minute at 660 nm (Peng et al, 2020).…”
Section: The General Procedures Of Keratinase Activity Assaymentioning
confidence: 99%
“…In previous studies, we expressed the keratinase gene Ker from Bacillus licheniformis BBE11-1 in B. subtilis WB600. By optimizing the promoter and ribosome binding sequence, the recombinant B. subtilis WB600-Ker can secrete 127.6 KU/mg mature enzyme extracellularly (Peng et al, 2020). The zymogen of KerZ1 was composed of a signal peptide, pro-peptide, and mature peptide, containing 29, 76, and 274 amino acids, respectively.…”
Section: Analysis Of Amino Acids and Peptidesmentioning
confidence: 99%
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“…The prospects of keratinases as suitable enzymes for industrial and biotechnological processes include their robustness in withstanding extreme conditions on like the classical proteases (Verma et al 2017). Microbial keratinases possess unique properties that bestows a potential suitable for use in a green economy including applications in the formulation of functional feed, detergent formulation, bio-decontamination, bating and tanning processes, personal care product formulation, and nanotechnology (Mitsuiki et al 2006;Paul et al 2014b;Gupta et al 2015;Sanghvi et al 2016;Kalaikumari et al 2019;Peng et al 2020). A continuum in the discovery of keratinases with novel properties and function would, significantly, revolutionize the bio-economy landscape, and the prospects presented by proteolytic enzymes.…”
Section: Introductionmentioning
confidence: 99%