Difference between revisions of "Part:BBa K4169016"

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<div class = "center"><center><img src = "https://static.igem.wiki/teams/4169/wiki/backword/dma/trimethylamine-matabolism/dma-meta.png" style = "width:50%"></center><br></div>
 
<div class = "center"><center><img src = "https://static.igem.wiki/teams/4169/wiki/backword/dma/trimethylamine-matabolism/dma-meta.png" style = "width:50%"></center><br></div>
 
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<center><b>Figure 1.</b>Pathways for dimethylamine metabolism in bacteria. </center>
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==Protein Molecular Structures==
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<p>
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Dimethylamine dehydrogenase(DMADH) exist as dimers.
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<div class = "center"><center><img src = "https://static.igem.wiki/teams/4169/wiki/backword/dma/tmd-dmd-structure/tmadh1-1.png" style = "width:75%"></center><br></div>
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<center><b>Figure 2.</b>Protein molecular structures of dimethylamine dehydrogenase. </center>
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===Sequence and Features===
 
<span class='h3bb'>Sequence and Features</span>
 
<span class='h3bb'>Sequence and Features</span>
 
<partinfo>BBa_K4169016 SequenceAndFeatures</partinfo>
 
<partinfo>BBa_K4169016 SequenceAndFeatures</partinfo>

Revision as of 01:20, 12 October 2022


produce DMADH

After expressing, it'll produce dimethylamine dehydrogenase (DMADH). The enzyme DMADH is an iron–sulfur flavoprotein which catalyses the oxidative demethylation of dimethylamine (DMA) to methylamine and formaldehyde:
(CH3)2N + H2O → CH3NH + CH2O +2H+ + 2e-.

Metabolic Pathway


Figure 1.Pathways for dimethylamine metabolism in bacteria.


Protein Molecular Structures

Dimethylamine dehydrogenase(DMADH) exist as dimers.


Figure 2.Protein molecular structures of dimethylamine dehydrogenase.


Sequence and Features

Sequence and Features


Assembly Compatibility:
  • 10
    COMPATIBLE WITH RFC[10]
  • 12
    INCOMPATIBLE WITH RFC[12]
    Unknown
  • 21
    INCOMPATIBLE WITH RFC[21]
    Unknown
  • 23
    COMPATIBLE WITH RFC[23]
  • 25
    INCOMPATIBLE WITH RFC[25]
    Illegal AgeI site found at 897
    Illegal AgeI site found at 1291
  • 1000
    COMPATIBLE WITH RFC[1000]