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Literature summary for 1.14.13.222 extracted from

  • Furuya, T.; Hirose, S.; Osanai, H.; Semba, H.; Kino, K.
    Identification of the monooxygenase gene clusters responsible for the regioselective oxidation of phenol to hydroquinone in mycobacteria (2011), Appl. Environ. Microbiol., 77, 1214-1220.
    View publication on PubMedView publication on EuropePMC

Metals/Ions

Metals/Ions Comment Organism Structure
Iron a pair of motif sequences (Glu-X-X-His) coordinate to the binuclear iron center at the active site Mycolicibacterium smegmatis
Iron a pair of motif sequences (Glu-X-X-His) coordinate to the binuclear iron center at the active site of subunit PrmA Mycobacterium goodii

Organism

Organism UniProt Comment Textmining
Mycobacterium goodii E9RFS9 and E9RFT0 and E9RFT1 and E9RFT2 E9RFS9 i.e. oxygenase large subunit MimA, E9RFT0 i.e. reductase MimB, E9RFT1 i.e. oxygenase small subunit MimC, E9RFT2 i.e. coupling protein MimD
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Mycobacterium goodii 12523 E9RFS9 and E9RFT0 and E9RFT1 and E9RFT2 E9RFS9 i.e. oxygenase large subunit MimA, E9RFT0 i.e. reductase MimB, E9RFT1 i.e. oxygenase small subunit MimC, E9RFT2 i.e. coupling protein MimD
-
Mycolicibacterium smegmatis A0QTU8 alpha subunit
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Mycolicibacterium smegmatis ATCC 700084 A0QTU8 alpha subunit
-

Synonyms

Synonyms Comment Organism
MimA
-
Mycolicibacterium smegmatis
MimABCD
-
Mycobacterium goodii
Msmeg_1971
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Mycolicibacterium smegmatis

General Information

General Information Comment Organism
physiological function binuclear iron monooxygenase gene cluster MimABCD plays essential roles in propane and acetone metabolism. A MimA deletion mutant has lost the ability to grow on propane, acetone or methylethylketone as source of carbon and energy Mycobacterium goodii
physiological function binuclear iron monooxygenase gene cluster MimABCD plays essential roles in propane and acetone metabolism. A MimA deletion mutant has lost the ability to grow on propane, acetone or methylethylketone as source of carbon and energy Mycolicibacterium smegmatis