Keratinases are proteolytic enzymes predominantly active when keratin substrates are available that attack disulfide bridges in the keratin to convert them from complex to simplified forms. Keratinases are essential in preparation of animal nutrients, protein supplements, leather manufacture, textile processing, detergent formulation, feather meal processing for feed and fertilizer, the pharmaceutical and biomedical industries, and wastemanagement. Accordingly, it is necessary to develop a method for continuous production of keratinase fromreliable sources that can be easilymanaged.Microbial keratinase is less expensive than conventionally produced keratinase and can be obtained from fungi, bacteria, and actinomycetes. In this overview...
Background: The hydrolysis of keratin wastes by microorganisms is considered a biotechnological alte...
Over recent years, keratin has gained great popularity due to its exceptional biocompatible and biod...
Keratinases (E.C.3.4.99.11) constitute a group of enzymes capable of disrupting the highly stable ke...
Keratinases are proteolytic enzymes predominantly active when keratin substrates are available that ...
Keratinases are a group of proteolytic enzymes that can catalyse the cleavage and hydrolysis of the ...
Keratinases are proteolytic enzymes predominantly active when keratin substrates are available that ...
Keratinases belong to a class of proteases that are able to degrade keratins into amino acids. Micro...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
Keratin je netopljivi strukturni protein, koji izgrađuje čvrsta tkiva ljudi i životinja, poput perja...
Keratin je netopljivi strukturni protein, koji izgrađuje čvrsta tkiva ljudi i životinja, poput perja...
ReviewKeratinases are proteolytic enzymes with a particular ability to cleave peptide bonds in kerat...
Keratin je netopljivi strukturni protein, koji izgrađuje čvrsta tkiva ljudi i životinja, poput perja...
Keratin je netopljivi strukturni protein, koji izgrađuje čvrsta tkiva ljudi i životinja, poput perja...
The aim of the review was to analyze the current ideas on keratinases, a group of proteolytic enzyme...
Keratinase are special proteases which have the ability to degrade recalcitrant, proteinase K resist...
Background: The hydrolysis of keratin wastes by microorganisms is considered a biotechnological alte...
Over recent years, keratin has gained great popularity due to its exceptional biocompatible and biod...
Keratinases (E.C.3.4.99.11) constitute a group of enzymes capable of disrupting the highly stable ke...
Keratinases are proteolytic enzymes predominantly active when keratin substrates are available that ...
Keratinases are a group of proteolytic enzymes that can catalyse the cleavage and hydrolysis of the ...
Keratinases are proteolytic enzymes predominantly active when keratin substrates are available that ...
Keratinases belong to a class of proteases that are able to degrade keratins into amino acids. Micro...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
Keratin je netopljivi strukturni protein, koji izgrađuje čvrsta tkiva ljudi i životinja, poput perja...
Keratin je netopljivi strukturni protein, koji izgrađuje čvrsta tkiva ljudi i životinja, poput perja...
ReviewKeratinases are proteolytic enzymes with a particular ability to cleave peptide bonds in kerat...
Keratin je netopljivi strukturni protein, koji izgrađuje čvrsta tkiva ljudi i životinja, poput perja...
Keratin je netopljivi strukturni protein, koji izgrađuje čvrsta tkiva ljudi i životinja, poput perja...
The aim of the review was to analyze the current ideas on keratinases, a group of proteolytic enzyme...
Keratinase are special proteases which have the ability to degrade recalcitrant, proteinase K resist...
Background: The hydrolysis of keratin wastes by microorganisms is considered a biotechnological alte...
Over recent years, keratin has gained great popularity due to its exceptional biocompatible and biod...
Keratinases (E.C.3.4.99.11) constitute a group of enzymes capable of disrupting the highly stable ke...