3.4.21.111: aqualysin 1
This is an abbreviated version!
For detailed information about aqualysin 1, go to the full flat file.
Word Map on EC 3.4.21.111
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3.4.21.111
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thermus
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aquaticus
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subtilisin-type
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proteinase
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vibrio
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pro-sequence
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subtilisin-like
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subtilisins
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vpr
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cooh-terminal
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heat-stable
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psychrotrophic
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psychrophilic
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subtilase
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p-nitroanilides
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baking
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bake
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subtilisin-related
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food industry
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biotechnology
- 3.4.21.111
- thermus
- aquaticus
-
subtilisin-type
- proteinase
- vibrio
-
pro-sequence
-
subtilisin-like
- subtilisins
- vpr
-
cooh-terminal
-
heat-stable
-
psychrotrophic
-
psychrophilic
-
subtilase
- p-nitroanilides
-
baking
-
bake
-
subtilisin-related
- food industry
- biotechnology
Reaction
exhibits low specificity towards esters of amino acids with small hydrophobic or aromatic residues at the P1 position =
Synonyms
Aq1, AQN, aqualysin I, S08.051
ECTree
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General Information
General Information on EC 3.4.21.111 - aqualysin 1
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evolution
additional information
the enzyme belongs to the proteinase K subfamily of enzymes
the enzyme has six salt bridges, Arg12-Asp183, Asp17-Arg259, Arg31-Asp237, Arg43-Asp212, Asp58-Arg95 and Asp138-Arg169, in its structure. The common salt bridge Asp183-Arg12 is important in maintaining the conformation of proteinase K subfamily enzymes and suggest the importance of proximity between the regions around Asp183 and the N-terminal region around Arg12
additional information
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the enzyme has six salt bridges, Arg12-Asp183, Asp17-Arg259, Arg31-Asp237, Arg43-Asp212, Asp58-Arg95 and Asp138-Arg169, in its structure. The common salt bridge Asp183-Arg12 is important in maintaining the conformation of proteinase K subfamily enzymes and suggest the importance of proximity between the regions around Asp183 and the N-terminal region around Arg12
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