6.2.1.44: 3-(methylthio)propionyl-CoA ligase
This is an abbreviated version!
For detailed information about 3-(methylthio)propionyl-CoA ligase, go to the full flat file.
Word Map on EC 6.2.1.44
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6.2.1.44
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methylglyoxal
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glycation
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dicarbonyls
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s-d-lactoylglutathione
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monodehydroascorbate
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mdhar
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d-lactic
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d-lactate
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dehydroascorbate
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alpha-oxoaldehydes
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mg-induced
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hemithioacetal
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4.4.1.5
- 6.2.1.44
- methylglyoxal
-
glycation
-
dicarbonyls
- s-d-lactoylglutathione
- monodehydroascorbate
- mdhar
-
d-lactic
- d-lactate
- dehydroascorbate
-
alpha-oxoaldehydes
-
mg-induced
-
hemithioacetal
-
4.4.1.5
Reaction
Synonyms
3-methylmercaptopropionyl-CoA ligase, BTH_DmdB2, BTH_I2141, DmdB, methylmercaptopropionate-coenzyme A ligase, MMPA-CoA ligase, PA4198, PA_DmdB1, PU_DmdB1, RL_DmdB1, RL_DmdB2, RPO_DmdB1, RPO_DmdB2, SAR11_0248, SL1157_1815, SL1157_2728, SPO0677, SPO2045
ECTree
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Expression
Expression on EC 6.2.1.44 - 3-(methylthio)propionyl-CoA ligase
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the amount of transcripts for dmdB, dmdC and dmdD increases during growth of wild-type enzyme on 3-(methylthio)propanoate or 3-(dimethylsulphonio)propanoate, as expected if the pathway is required for 3-(methylthio)propanoate metabolism
two forms of DmdB are present in the marine roseobacter Ruegeria pomeroyi DSS-3, RPO_DmdB1 and RPO_DmdB2. They are differentially expressed depending on carbon source. RPO_dmdB1 exhibits overall lower steady-state levels of mRNA than RPO_dmdB2 for dimethylsulfoniopropionate, 3-(methylthio)propanoate, or methionine as the sole source of carbon. Although the levels of the RPO_dmdB1 transcripts increases during growth on dimethylsulfoniopropionate and methionine, it is always lower than those of RPO_dmdB2. For that reason, RPO_dmdB2 appears to be the major DmdB during growth on compounds leading to 3-(methylthio)propanoate formation