3.4.24.26: pseudolysin
This is an abbreviated version!
For detailed information about pseudolysin, go to the full flat file.
Word Map on EC 3.4.24.26
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3.4.24.26
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thermolysin
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metalloproteinases
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collagenase
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metalloprotease
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3.4.24.4
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elastin
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gelatinase
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elastases
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phosphoramidon
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pseudomonal
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stromelysin
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thermolysin-like
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metalloendopeptidase
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medicine
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thermoproteolyticus
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aureolysin
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vibriolysin
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intrastromal
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industry
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nutrition
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biotechnology
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synthesis
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pharmacology
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diagnostics
- 3.4.24.26
- thermolysin
- metalloproteinases
- collagenase
- metalloprotease
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3.4.24.4
- elastin
- gelatinase
- elastases
- phosphoramidon
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pseudomonal
- stromelysin
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thermolysin-like
- metalloendopeptidase
- medicine
- thermoproteolyticus
- aureolysin
- vibriolysin
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intrastromal
- industry
- nutrition
- biotechnology
- synthesis
- pharmacology
- diagnostics
Reaction
Hydrolysis of proteins including elastin, collagen types III and IV, fibronectin and immunoglobulin A, generally with bulky hydrophobic group at P1'. Insulin B chain cleavage pattern identical to that of thermolysin, but specificity differs in other respects =
Synonyms
A2 elastase, aeruginolysin, ealastase LasB, EC 3.4.24.4, elastase, elastase B, elastolytic metalloproteinase, EPa, LasB, LasB protease, LepA, More, Neutral metalloproteinase, PAE, PASP, PE, PsE, Pseudomonas aeruginosa elastase, Pseudomonas aeruginosa neutral metalloproteinase, Pseudomonas aeruginosa small protease, Pseudomonas elastase, Pseudomonas protease
ECTree
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Application
Application on EC 3.4.24.26 - pseudolysin
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biotechnology
diagnostics
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specific protease activity of the enzyme as indicator for the degree of Pseudomonas aeruginosa infection in chronic infected wounds
industry
medicine
nutrition
pharmacology
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branched antimicrobial peptide M33 pegylation at the C-terminus of the three lysine-branching core with a Peg4 molecule and the resulting increase in stability to Pseudomonas aeruginosa elastase, peptide resistance to this protease is an important feature for M33-Peg activity against Pseudomonas aeruginosa
synthesis
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A2 protease is usable for shrimp waste deproteinization in the process of chitin preparation, percent of protein removal after 3 h hydrolysis at 40°C with an enzyme/substrate ratio of 5 U/mg protein is about 75%. A2 proteolytic preparation also demonstrates powerful depilating capabilities of hair removal from bovine skin
biotechnology
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A2 protease is usable for shrimp waste deproteinization in the process of chitin preparation, percent of protein removal after 3 h hydrolysis at 40°C with an enzyme/substrate ratio of 5 U/mg protein is about 75%. A2 proteolytic preparation also demonstrates powerful depilating capabilities of hair removal from bovine skin
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A2 protease is usable for shrimp waste deproteinization in the process of chitin preparation, percent of protein removal after 3 h hydrolysis at 40°C with an enzyme/substrate ratio of 5 U/mg protein is about 75%. A2 proteolytic preparation also demonstrates powerful depilating capabilities of hair removal from bovine skin
industry
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pseudolysin is a biotechnologically important enzyme in the tanning industry
industry
potential application in the leather industry and as a therapeutic agent
industry
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A2 protease is usable for shrimp waste deproteinization in the process of chitin preparation, percent of protein removal after 3 h hydrolysis at 40°C with an enzyme/substrate ratio of 5 U/mg protein is about 75%. A2 proteolytic preparation also demonstrates powerful depilating capabilities of hair removal from bovine skin
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industry
Pseudomonas aeruginosa MCCB 123
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potential application in the leather industry and as a therapeutic agent
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2-mercaptoacetyl-L-phenylalanyl-L-leucine represents a class of potent elastase inhibitors that might prove useful in the management of Pseudomonas aeruginosa infections
medicine
application of the inhibitors may be helpful in the management of corneal infections with Pseudomonas aeruginosa
medicine
Inflammation and consequent lung dysfunction are hallmarks of recurrent Pseudomonas aeruginosa infections in cystic fibrosis lungs. The continued presence of bacterial components, including PE, can evoke an ongoing host inflammatory response by induction of inflammatory cytokinines and chemokinines such as interleukin-8. Although this cytokinine is essential for an effective host defense, continuous neutrophil transmigration and degranulation will damage the lung tissue through neutrophil-derived proteases. Therefore, the use of specific antibody against Pseudomonas elastase as adjuvant therapy along with antibacterial agents can prove an effective approach in the treatment of chronic Pseudomonas aeruginosa infection.
medicine
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phosphoramidon, the inhibitor of the enzyme, may prove beneficial in the treatment of Pseudomonas aeruginosa corneal infections
medicine
the inhibitor may have a therapeutic application by delaying the progression of corneal destruction in Pseudomonas keratitis
medicine
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the inhibitor of the enzyme, 2-mercaptoacetyl-L-phenyalanyl-L-leucine, has therapeutic potential as an adjunct to antibiotics treatment of Pseudomonas keratitis in rabbits
medicine
the protective activity of elastase mutants against Pseudomonas infections may be useful in producing vaccines
medicine
enzyme can silence the function of proteinase-activated receptor-2 in the respiratory tract, thereby altering the host innate defense mechanisms and respiratory functions, and thus contributing to the setting of a disease like cystic fibrosis
medicine
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Pseudomonas aeruginosa cytotoxic elastase is enhanced in the presence of the filamentous fungi Aspergillus fumigatus, suggesting that this may have a role to play in the damaging pathology associated with the lung tissue in this disease. This indicates that patients who have a co-colonisation with these two organisms may have a poorer prognosis
medicine
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the enzyme is a promising target for the development of new anti-virulence compounds
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pseudolysin is an enzyme cleaving gluten effectively at extremely low as well as near neutral pH values. The potential to degrade gluten during gastric transport opens possibilities for its application as a therapeutic agent for the treatment of celiac disease
nutrition
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pseudolysin is an enzyme cleaving gluten effectively at extremely low as well as near neutral pH values. The potential to degrade gluten during gastric transport opens possibilities for its application as a therapeutic agent for the treatment of celiac disease
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the Pseudomonas aeruginosa elastase, produced by Pichia pastoris, is a promising biocatalyst for peptide synthesis in organic solvents
synthesis
WP_084338031.1
the enzyme can be applied to obtain bioactive soluble peptides from eggshell-membrane. Potential applicability of its peptides as functional food and cosmetic additives
synthesis
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the enzyme can be applied to obtain bioactive soluble peptides from eggshell-membrane. Potential applicability of its peptides as functional food and cosmetic additives
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