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Literature summary for 1.14.13.25 extracted from

  • Ukaegbu, U.E.; Henery, S.; Rosenzweig, A.C.
    Biochemical characterization of MmoS, a sensor protein involved in copper-dependent regulation of soluble methane monooxygenase (2006), Biochemistry, 45, 10191-10198.
    View publication on PubMed

Localization

Localization Comment Organism GeneOntology No. Textmining
soluble soluble enzyme, sMMO Methylococcus capsulatus
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-

Metals/Ions

Metals/Ions Comment Organism Structure
copper the enzyme expresses the soluble enzyme form under copper limitation, and the membrane-bound particulate MMO at high copper-to-biomass ratio, mechanism of the copper switch involves a tetrameric 480 kDA sensor protein MmoS, encoded by gene mmoS, as part of a two-component signaling system, domain organization, MmoS contains a FAD cofactor, indirect regulation without binding of copper to MmoS, overview Methylococcus capsulatus

Natural Substrates/ Products (Substrates)

Natural Substrates Organism Comment (Nat. Sub.) Natural Products Comment (Nat. Pro.) Rev. Reac.
methane + NADH + O2 Methylococcus capsulatus
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methanol + NAD+ + H2O
-
?
methane + NADH + O2 Methylococcus capsulatus Bath
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methanol + NAD+ + H2O
-
?
additional information Methylococcus capsulatus the enzyme expresses the soluble enzyme form under copper limitation, and the membrane-bound particulate MMO at high copper-to-biomass ratio, mechanism of the copper switch involves a tetrameric 480 kDA sensor protein MmoS, encoded by gene mmoS, as part of a two-component signaling system, domain organization, MmoS contains a FAD cofactor, indirect regulation without binding of copper to MmoS, overview ?
-
?
additional information Methylococcus capsulatus Bath the enzyme expresses the soluble enzyme form under copper limitation, and the membrane-bound particulate MMO at high copper-to-biomass ratio, mechanism of the copper switch involves a tetrameric 480 kDA sensor protein MmoS, encoded by gene mmoS, as part of a two-component signaling system, domain organization, MmoS contains a FAD cofactor, indirect regulation without binding of copper to MmoS, overview ?
-
?

Organism

Organism UniProt Comment Textmining
Methylococcus capsulatus
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-
-
Methylococcus capsulatus Bath
-
-
-

Substrates and Products (Substrate)

Substrates Comment Substrates Organism Products Comment (Products) Rev. Reac.
methane + NADH + O2
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Methylococcus capsulatus methanol + NAD+ + H2O
-
?
methane + NADH + O2
-
Methylococcus capsulatus Bath methanol + NAD+ + H2O
-
?
additional information the enzyme expresses the soluble enzyme form under copper limitation, and the membrane-bound particulate MMO at high copper-to-biomass ratio, mechanism of the copper switch involves a tetrameric 480 kDA sensor protein MmoS, encoded by gene mmoS, as part of a two-component signaling system, domain organization, MmoS contains a FAD cofactor, indirect regulation without binding of copper to MmoS, overview Methylococcus capsulatus ?
-
?
additional information the enzyme expresses the soluble enzyme form under copper limitation, and the membrane-bound particulate MMO at high copper-to-biomass ratio, mechanism of the copper switch involves a tetrameric 480 kDA sensor protein MmoS, encoded by gene mmoS, as part of a two-component signaling system, domain organization, MmoS contains a FAD cofactor, indirect regulation without binding of copper to MmoS, overview Methylococcus capsulatus Bath ?
-
?

Synonyms

Synonyms Comment Organism
particulate methane monooxygenase
-
Methylococcus capsulatus
pMMO
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Methylococcus capsulatus
sMMO
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Methylococcus capsulatus
soluble methane monooxygenase
-
Methylococcus capsulatus

Cofactor

Cofactor Comment Organism Structure
NADH
-
Methylococcus capsulatus