3.5.5.5: Arylacetonitrilase
This is an abbreviated version!
For detailed information about Arylacetonitrilase, go to the full flat file.
Word Map on EC 3.5.5.5
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3.5.5.5
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mandelonitrile
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enantioselectivity
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fluorescens
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arylacetonitriles
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enantiomeric
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s-mandelic
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phenylacetonitrile
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alcaligenes
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r,s-mandelonitrile
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benzaldehyde
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synthesis
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arylacetic
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esculenta
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enantiospecificity
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ultrafast
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psychrotolerans
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s-selectivity
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manihot
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biotechnology
- 3.5.5.5
- mandelonitrile
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enantioselectivity
- fluorescens
- arylacetonitriles
-
enantiomeric
-
s-mandelic
- phenylacetonitrile
- alcaligenes
-
r,s-mandelonitrile
- benzaldehyde
- synthesis
-
arylacetic
- esculenta
-
enantiospecificity
-
ultrafast
- psychrotolerans
-
s-selectivity
-
manihot
- biotechnology
Reaction
Synonyms
Arylacetonitrilase, arylacetonitrile-hydrolyzing nitrilase, arylacetonitrile-specific nitrilase, blr3397, enantioselective arylacetonitrilase, GPnor51, NIT, NitA, NitAd, NitAk2, NitAn, NitMp, NitP, nitrilase, nitrilase PpL19, Nitrilase, arylaceto-, NitTv
ECTree
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Application
Application on EC 3.5.5.5 - Arylacetonitrilase
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biotechnology
synthesis
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nitrilases are important industrial enzymes that convert nitriles directly into the corresponding carboxylic acids
synthesis
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recombinant cells expressing the enzyme are promising catalysts for the synthesis of stable chiral quaternary carbon centers from ketones
synthesis
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the enzyme is promising for the enantioretentive transformation of (S)-mandelonitrile
synthesis
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the whole cell arylacetonitrilase of Alcaligenes faecalis MTCC 12629 is employed to develop a bioprocess for the synthesis of 4-hydroxyphenylacetic acid from 4-hydroxyphenylacetonitrile. A fed batch process designed at 500 ml with five feedings of substrate results in 150 mM product formation using 18 U/ml whole cells nitrilase (16 mg/ml dcw) at 45°C and a volumetric and catalytic productivity of 23 g/l and 4.13 g/g dcw/h
synthesis
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recombinant cells expressing the enzyme are promising catalysts for the synthesis of stable chiral quaternary carbon centers from ketones
-
synthesis
Alcaligenes faecalis MTCC 12629
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the whole cell arylacetonitrilase of Alcaligenes faecalis MTCC 12629 is employed to develop a bioprocess for the synthesis of 4-hydroxyphenylacetic acid from 4-hydroxyphenylacetonitrile. A fed batch process designed at 500 ml with five feedings of substrate results in 150 mM product formation using 18 U/ml whole cells nitrilase (16 mg/ml dcw) at 45°C and a volumetric and catalytic productivity of 23 g/l and 4.13 g/g dcw/h
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synthesis
-
nitrilases are important industrial enzymes that convert nitriles directly into the corresponding carboxylic acids
-