5.1.1.17: isopenicillin-N epimerase
This is an abbreviated version!
For detailed information about isopenicillin-N epimerase, go to the full flat file.
Word Map on EC 5.1.1.17
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5.1.1.17
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cephalosporin
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acremonium
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chrysogenum
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beta-lactam
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clavuligerus
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epimerization
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deacetoxycephalosporin
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cefef
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pyridoxal
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pcbab
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deacetylcephalosporin
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cephamycins
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expandase
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acyltransferase
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pende
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untransformed
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alpha-aminoadipic
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lactamdurans
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daocs
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biotechnology
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synthesis
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medicine
- 5.1.1.17
- cephalosporin
- acremonium
- chrysogenum
- beta-lactam
- clavuligerus
-
epimerization
-
deacetoxycephalosporin
- cefef
- pyridoxal
-
pcbab
-
deacetylcephalosporin
-
cephamycins
-
expandase
- acyltransferase
-
pende
-
untransformed
-
alpha-aminoadipic
- lactamdurans
- daocs
- biotechnology
- synthesis
- medicine
Reaction
Synonyms
cefD2, IPN epimerase, isopenecillin N-CoA epimerase, isopenicillin N epimerase, isopenicillin N-CoA epimerase, PenN epimerase
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Application
Application on EC 5.1.1.17 - isopenicillin-N epimerase
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biotechnology
medicine
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the conversion of isopenicillin N into penicillin N is part of the cephalosporin biosynthesis pathway. Cephalosporin is one of the most potent beta-lactam antibiotics, widely used in the treatment of infectious diseases
synthesis
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The results indicate that Penecillium chrysogenum can be used as heterologous host for the production of deacetylcephalosporin C
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epimerization is a rate-limiting step in cephalosporin biosynthesis in Acremonium chrysogenum. When epimerase activity is enhanced, there is a clear increase in cephalosporin production. Thus, this method provides a strategy that could easily be applied to improve industrial cephalosporin producing strains
synthesis
Acremonium chrysogenum C10 / ATCC 48272
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epimerization is a rate-limiting step in cephalosporin biosynthesis in Acremonium chrysogenum. When epimerase activity is enhanced, there is a clear increase in cephalosporin production. Thus, this method provides a strategy that could easily be applied to improve industrial cephalosporin producing strains
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