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Methane oxidation by aerobic methanotrophs is well-known to be strongly regulated by the availability of copper, i.e., the “copper-switch”. That is, there are two forms of the methane monooxygenase: a cytoplasmic or soluble methane monooxygenase (sMMO) and a membrane-bound or particulate methane mon...
ORGANISM(S): Methylosinus trichosporium OB3b 
2023-09-29 | PXD045741 | Pride
Proteomics data related to the manuscript with title "Localization of the copper centers in membrane-bound methane monooxygenase by native top-down mass spectrometry"
ORGANISM(S): Methylomicrobium Buryatense 5g (ncbitaxon:675511) Methylomicrobium Alcaliphilum 20z (ncbitaxon:1091494) 
2019-04-24 | MSV000083717 | MassIVE
To obtain deeper understanding of atmospheric dynamics of the potent greenhouse gas methane, controlling factors of methanotrophs, as the sole biological methane sink, is necessary. Recent research has revealed complex interactions between methanotrophs and heterotrophs, involving volatile organic c...
ORGANISM(S): Methylomonas sp. LL1 Exiguobacterium sp. 10(2011) Microbacterium oxydans 
2024-08-08 | PXD051964 | Pride
Natural and anthropogenic wetlands are main sources of the atmospheric greenhouse gas methane. Methane emissions from wetlands are mitigated by methanotrophic microorganisms and by processes at the oxic-anoxic interface, such as sulfur cycling, that reduce the activity of methanogens. In this study,...
ORGANISM(S): Methylovirgula sp. 
2022-07-11 | PXD025979 | Pride
Genomics
Particulate methane monooxygenase diversity on an Arctic shelf
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