KEGG   Iodobacter fluviatilis: C1H71_01950
Entry
C1H71_01950       CDS       T06803                                 
Name
(GenBank) phytanoyl-CoA dioxygenase
  KO
K00477  phytanoyl-CoA hydroxylase [EC:1.14.11.18]
Organism
ifl  Iodobacter fluviatilis
Pathway
ifl04146  Peroxisome
Brite
KEGG Orthology (KO) [BR:ifl00001]
 09140 Cellular Processes
  09141 Transport and catabolism
   04146 Peroxisome
    C1H71_01950
Enzymes [BR:ifl01000]
 1. Oxidoreductases
  1.14  Acting on paired donors, with incorporation or reduction of molecular oxygen
   1.14.11  With 2-oxoglutarate as one donor, and incorporation of one atom of oxygen into each donor
    1.14.11.18  phytanoyl-CoA dioxygenase
     C1H71_01950
SSDB
Motif
Pfam: PhyH
Other DBs
NCBI-ProteinID: QBC42444
UniProt: A0A7G3G5G3
LinkDB
Position
complement(456307..457140)
AA seq 277 aa
MTLFAGVTVLLAQFCLPIDLASLSKRFNADGVVVLRGFVALERVGQIRKAAMDAVVQRIP
PFELEAELGYPGAPASTADVGGGTIRRLRNMAGRDPIFAEWAGDIKLLTIISCLLNTPQI
TLTQAHHNSLMSKQPSFSSDTRWHRDVRYWHFSRPELVSAWLALGDETTENGGLGFVPGS
HRVDFPSDAYDENEFLMADHAEAAPWVALAQFPALVAGDVVLFDARTFHAASRNRTAQTK
YSLVYSYHTSSNTPLAGTRSSSQAGLVFELASAAVIA
NT seq 834 nt   +upstreamnt  +downstreamnt
ttgactttatttgccggagtaacggttttgcttgcccaattttgcttgcccattgattta
gcctccttatctaagcgctttaatgctgatggcgtggtcgttttgcgtggctttgttgct
ctggagcgagtcggccaaattcgcaaggccgcgatggatgcggtagttcagcgtattccc
ccttttgagttagaggcggagctgggttatccaggtgctcccgcttctaccgccgatgtg
gggggcggtacgattcggcgtttaagaaatatggcagggcgagatccgatatttgctgag
tgggcaggcgatataaaactacttaccattattagttgcttgctaaatacaccgcaaatc
acccttacccaagcgcatcacaatagtttaatgagtaagcagcccagctttagtagcgat
acgcgttggcatcgtgatgtacgttactggcactttagccgcccagagttagtttctgca
tggctggctttaggtgatgaaaccacagaaaacggtggcttgggctttgtgcctggctcg
catcgagttgatttccctagtgatgcttatgatgaaaatgaattcctgatggccgatcac
gccgaagcggccccttgggtggctttggcacaatttcctgctttagttgcaggcgatgtg
gtgctgtttgatgcacgtacttttcatgcagcaagccgtaatcgcaccgcgcagaccaaa
tattctttggtttatagctatcacaccagcagcaataccccactcgcgggcactcgttca
tctagtcaagcggggttggtttttgagttagcaagcgctgcagttattgcttaa

DBGET integrated database retrieval system