3.5.1.11: penicillin amidase
This is an abbreviated version!
For detailed information about penicillin amidase, go to the full flat file.
Word Map on EC 3.5.1.11
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3.5.1.11
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6-aminopenicillanic
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phenylacetic
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biocatalyst
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anandamide
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acylases
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cannabinoids
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cephalosporin
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synthesis
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binuclear
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alcaligenes
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cephalexin
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megaterium
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endocannabinoids
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semi-synthetic
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3.5.1.1
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kluyvera
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l-asparagine
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dihydroorotase
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phenylacetylated
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allantoinase
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dihydropyrimidinase
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lactonase
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amoxicillin
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rettgeri
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eupergit
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multipoint
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acyl-enzyme
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asparaginase
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hydantoinase
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phenoxyacetic
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aminoacylase
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7-aminocephalosporanic
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phosphotriesterase
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sphaericus
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hydantoin
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providencia
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n-acylethanolamines
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penicillanic
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dihydrouracil
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cleas
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pharmacology
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industry
- 3.5.1.11
-
6-aminopenicillanic
-
phenylacetic
-
biocatalyst
- anandamide
- acylases
- cannabinoids
- cephalosporin
- synthesis
-
binuclear
- alcaligenes
- cephalexin
- megaterium
-
endocannabinoids
-
semi-synthetic
-
3.5.1.1
-
kluyvera
- l-asparagine
- dihydroorotase
-
phenylacetylated
- allantoinase
- dihydropyrimidinase
- lactonase
- amoxicillin
- rettgeri
-
eupergit
-
multipoint
- acyl-enzyme
- asparaginase
- hydantoinase
-
phenoxyacetic
-
aminoacylase
-
7-aminocephalosporanic
- phosphotriesterase
- sphaericus
- hydantoin
- providencia
- n-acylethanolamines
-
penicillanic
- dihydrouracil
-
cleas
- pharmacology
- industry
Reaction
Synonyms
ACPGA001 PGA, AfPGA, alpha-acylamino-beta-lactam acylhydrolase, amidase, amidohydrolase, ampicillin acylase, AuAAC, benzylpenicillin acylase, BmPGA, Eca3205, KcPGA, maPGA, More, novozym 217, PA, PAC, penicillin acylase, penicillin amidase, Penicillin amidohydrolase, penicillin G acylase, Penicillin G amidase, Penicillin G amidohydrolase, penicillin V acylase, Penicillin V amidase, penicillin-G acylase, PGA, PGA650, PVA, semacylase, Sm-PVA, YxeI
ECTree
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Natural Substrates Products
Natural Substrates Products on EC 3.5.1.11 - penicillin amidase
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REACTION DIAGRAM
penicillin V + H2O
6-aminopenicillanic acid + phenoxyacetic acid
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substrate of soluble and immobilized enzyme
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-
?
phenylacetic acid + 6-aminopenicillanate
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-
-
-
?
benzylpenicillin + H2O
phenylacetic acid + 6-aminopenicillanate
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highly specific
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-
?
benzylpenicillin + H2O
phenylacetic acid + 6-aminopenicillanate
Priestia megaterium 14945
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highly specific
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-
?
6-aminopenicillanic acid + phenyl acetic acid
penicillin G acylase is a type II penicillin acylase
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-
?
penicillin G + H2O
6-aminopenicillanic acid + phenyl acetic acid
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-
-
-
?
6-aminopenicillanic acid + phenylacetic acid
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-
-
-
?
penicillin G + H2O
6-aminopenicillanic acid + phenylacetic acid
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-
-
-
?
penicillin G + H2O
6-aminopenicillanic acid + phenylacetic acid
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enzyme specific for penicillin G
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-
?
penicillin G + H2O
6-aminopenicillanic acid + phenylacetic acid
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function in nature not fully understood, possibly functions to degrade phenylacetylated compounds in order to generate phenylacetic acid which can be used as carbon source
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-
?
penicillin G + H2O
6-aminopenicillanic acid + phenylacetic acid
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-
-
-
?
penicillin G + H2O
phenylacetate + 6-aminopenicillanate
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-
-
?
penicillin G + H2O
phenylacetic acid + 6-aminopenicillanate
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-
-
-
?
penicillin G + H2O
phenylacetic acid + 6-aminopenicillanate
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-
-
-
?
penicillin G + H2O
phenylacetic acid + 6-aminopenicillanate
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-
-
-
?
penicillin G + H2O
phenylacetic acid + 6-aminopenicillanate
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-
-
-
?
penicillin G + H2O
phenylacetic acid + 6-aminopenicillanate
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catalysis of the reverse reaction at low pH or low water activity
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-
r
penicillin G + H2O
phenylacetic acid + 6-aminopenicillanate
Priestia megaterium ATCC 14945
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-
-
-
?
?
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intracellular proteolysis in the cytoplasm is one of the important steps that limit the yield of active penicillin amidase from the translational product pre-pro-peniciliin amidase. Glucose and temperature are important parameters, determining the degradation rate of the proteolytically sensitive pre-pro-penicillin amidase
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?
additional information
?
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penicillin acylase is able to both hydrolyze and synthesize beta-lactam antibiotics
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-
?
additional information
?
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autoproteolytic processing of the alpha and beta subunit
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?