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MetNet - Plant pathway database

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You are in: gene > AT4G37410 / "cytochrome P450, family 81, subfamily F, polypept
The name of this entity may also refer to: AT4G37410 / "cytochrome P450, family 81, subfamily F, polypept [RNA] AT4G37410 / "cytochrome P450, family 81, subfamily F, polypept [polypeptide]

General info Literature Cellular context
TAIR information [AT4G37410]
Affy25k probenames:253073_at  
Affy8k probenames: 14117_at  
AFGC IDs: <no data>
Gene names: "cytochrome P450, family 81, subfamily F, polypept  
Description: "cytochrome P450, family 81, subfamily F, polypeptide 4 (CYP81F4); FUNCTIONS IN: electron carrier activity, monooxygenase activity, iron ion binding, oxygen binding, heme binding; INVOLVED IN: oxidation reduction; LOCATED IN: endoplasmic reticulum; EXPRESSED IN: 12 plant structures; EXPRESSED DURING: 7 growth stages; CONTAINS InterPro DOMAIN/s: Cytochrome P450 (InterPro:IPR001128), Cytochrome P450, conserved site (InterPro:IPR017972), Cytochrome P450, E-class, group I (InterPro:IPR002401); BEST Arabidopsis thaliana protein match is: cytochrome P450, family 81, subfamily F, polypeptide 3 (TAIR:AT4G37400.1); Has 35936 Blast hits to 35767 proteins in 1827 species: Archae - 66; Bacteria - 5738; Metazoa - 11729; Fungi - 7404; Plants - 9478; Viruses - 6; Other Eukaryotes - 1515 (source: NCBI BLink)."  
Gene ontology:
PGO:0042343indole glucosinolate metabolic process
  GO:0000041transition metal ion transport
  GO:0055114oxidation-reduction process
CGO:0005783endoplasmic reticulum
FGO:0009055electron carrier activity
  GO:0016705oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen
  GO:0005506iron ion binding
  GO:0020037heme binding
  GO:0019825oxygen binding
  GO:0004497monooxygenase activity
NCBI links
Send this gene to ATGeneSearch for more information
Entity information

This entity is present in: nucleus
Synonyms were found. This entity is also known as: CYP81F4
Pathways
The entity [AT4G37410 / "cytochrome P450, family 81, subfamily F, polypept] participates in the following pathways:

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Pathway [2 shown] Organism Created on
glucosinolate biosynthesis from tryptophan Arabidopsis Mon Jul 29, 2013
indole glucosinolate breakdown (active in intact plant cell) Arabidopsis Mon Jul 29, 2013

Interactions
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Type
Transcription

Copyright © 2006-2016 Wurtele lab. Copyright refers to the integration and online application, not the data from the various sources.

 

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