3.4.21.36: pancreatic elastase
This is an abbreviated version!
For detailed information about pancreatic elastase, go to the full flat file.
Word Map on EC 3.4.21.36
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3.4.21.36
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porcine
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exocrine
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emphysema
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fecal
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elastin
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pancreas
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leukocyte
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pulmonary
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elastase-induced
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elastases
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instil
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intratracheal
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amylase
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abdominal
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alveolar
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stool
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aortic
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aaa
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elastolytic
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aneurysm
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lavage
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bronchoalveolar
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proteinases
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emphysematous
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airspace
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hne
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intercept
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alpha-chymotrypsin
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steatorrhea
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1-antitrypsin
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2-macroglobulin
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1-proteinase
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elastase-treated
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analysis
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elastase-mediated
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elastatinal
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maldigestion
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isoamylase
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cholangiopancreatography
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alpha-1-proteinase
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procarboxypeptidase
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antiprotease
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antielastase
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intra-aortic
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medicine
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ovomucoid
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non-pancreatic
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pancreatoduodenectomy
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carlsberg
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desmosine
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3.4.21.1
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elastase-like
- 3.4.21.36
- porcine
-
exocrine
- emphysema
-
fecal
- elastin
- pancreas
- leukocyte
- pulmonary
-
elastase-induced
- elastases
-
instil
-
intratracheal
- amylase
- abdominal
- alveolar
-
stool
- aortic
- aaa
-
elastolytic
- aneurysm
-
lavage
-
bronchoalveolar
- proteinases
-
emphysematous
-
airspace
- hne
-
intercept
- alpha-chymotrypsin
- steatorrhea
-
1-antitrypsin
-
2-macroglobulin
-
1-proteinase
-
elastase-treated
- analysis
-
elastase-mediated
- elastatinal
-
maldigestion
- isoamylase
-
cholangiopancreatography
-
alpha-1-proteinase
-
procarboxypeptidase
-
antiprotease
-
antielastase
-
intra-aortic
- medicine
- ovomucoid
-
non-pancreatic
-
pancreatoduodenectomy
-
carlsberg
- desmosine
-
3.4.21.1
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elastase-like
Reaction
Hydrolysis of proteins, including elastin. Preferential cleavage: Ala-/- =
Synonyms
CELA1, CELA3A, CELA3B, chymotrypsin-like elastase, EC 3.4.21.11, EC 3.4.4.7, elastase, elastase 1, elastase-1, elaszym, ELT, FE1, pancreatic elastase, pancreatic elastase 3, pancreatic elastase 3B, pancreatic elastase I, pancreatic elastase-1, pancreatopeptidase E, PE 3B, PE-1, peptidase, pancreato-, E, PPE, PRT-201, serine elastase, type I pancreatic elastase
ECTree
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General Stability
General Stability on EC 3.4.21.36 - pancreatic elastase
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when the native structure is achieved, cosolvents increase the stability of the enzyme to the same extent as does the acylation of the active center residue Ser195. Dimethylsulfoxide, glycerol and methanol enhance the stability of the intermediates able to refold into the native form, contrary to acetonitrile
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