3.4.21.88: Repressor LexA
This is an abbreviated version!
For detailed information about Repressor LexA, go to the full flat file.
Word Map on EC 3.4.21.88
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3.4.21.88
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reca
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lambda
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phage
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single-stranded
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regulon
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umud
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prophage
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mitomycin
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dna-damaging
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damage-inducible
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colicins
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sos-induced
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coprotease
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uv-irradiated
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nalidixic
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autodigestion
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self-cleavage
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sula
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lexa-binding
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reca430
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lysogens
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reca-dependent
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lexa-regulated
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reca-mediated
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lexadef
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promoter-operator
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drug development
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translesion
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antirepressors
- 3.4.21.88
- reca
- lambda
- phage
-
single-stranded
-
regulon
- umud
- prophage
- mitomycin
-
dna-damaging
-
damage-inducible
- colicins
-
sos-induced
-
coprotease
-
uv-irradiated
-
nalidixic
-
autodigestion
-
self-cleavage
- sula
-
lexa-binding
-
reca430
-
lysogens
-
reca-dependent
-
lexa-regulated
-
reca-mediated
-
lexadef
-
promoter-operator
- drug development
-
translesion
-
antirepressors
Reaction
Hydrolysis of Ala84-/-Gly bond in repressor LexA =
Synonyms
Cg2114, LexA, LexA protein, LexA repressor, LexA transcriptional repressor, LexA1, lexA_1, MtLexA, SOS regulatory protein dinR
ECTree
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Expression
Expression on EC 3.4.21.88 - Repressor LexA
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exposure to SOS-response inducing stresses, such as UV-B and mitomycin C neither affects the expression of LexA in Anabaena nor induces cleavage of LexA in either Anabaena 7120 or Escherichia coli overexpressing Anabaena LexA protein
transcription of gene lexA is upregulated during cold acclimatization and after cold shock
exposure to SOS-response inducing stresses, such as UV-B and mitomycin C neither affects the expression of LexA in Anabaena nor induces cleavage of LexA in either Anabaena 7120 or Escherichia coli overexpressing Anabaena LexA protein
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transcription of gene lexA is upregulated during cold acclimatization and after cold shock
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transcription of gene lexA is upregulated during cold acclimatization and after cold shock
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