KEGG   Candidatus Nitrotoga sp. AM1P: W01_19970
Entry
W01_19970         CDS       T06613                                 
Name
(GenBank) ubiquinone biosynthesis hydroxylase UbiH
  KO
K18800  2-polyprenylphenol 6-hydroxylase [EC:1.14.13.240]
Organism
nim  Candidatus Nitrotoga sp. AM1P
Pathway
nim00130  Ubiquinone and other terpenoid-quinone biosynthesis
nim01100  Metabolic pathways
nim01110  Biosynthesis of secondary metabolites
nim01240  Biosynthesis of cofactors
Module
nim_M00117  Ubiquinone biosynthesis, prokaryotes, chorismate (+ polyprenyl-PP) => ubiquinol
Brite
KEGG Orthology (KO) [BR:nim00001]
 09100 Metabolism
  09108 Metabolism of cofactors and vitamins
   00130 Ubiquinone and other terpenoid-quinone biosynthesis
    W01_19970
Enzymes [BR:nim01000]
 1. Oxidoreductases
  1.14  Acting on paired donors, with incorporation or reduction of molecular oxygen
   1.14.13  With NADH or NADPH as one donor, and incorporation of one atom of oxygen into the other donor
    1.14.13.240  2-polyprenylphenol 6-hydroxylase
     W01_19970
SSDB
Motif
Pfam: FAD_binding_3 Lycopene_cycl DAO SE Pyr_redox Pyr_redox_2 NAD_binding_8 Trp_halogenase FAD_binding_2 GIDA TrkA_N 3HCDH_N Pyr_redox_3 FAD_oxidored
Other DBs
NCBI-ProteinID: BBJ24070
UniProt: A0A455XFR0
LinkDB
Position
2258760..2259917
AA seq 385 aa
MTFDVLIIGGGLVGASLAAALKSSGLNMALVETQPTVLSNEGWDNRIYAVSPGGAAFLTQ
CDAWQQLDMNRVQPVETMRVFGDEDMELDFSAYQLGVPELAFILENRLLQQVLWRGLQEQ
DNLTLFHPAHCASLVWHDDAAYLQLEDGRTLKAKLVIGADGGNSWVRQQAGIVAPPTLYN
QHGVVANFAVEKLHRATAFQWFQPDGILALLPLPQQMVSMVWSVSPEKSQILLQLSHEEL
CAQVAAASHHTLGALQLVTSPAAFPLRLLNLPQIIKPRLALVGDAAHNIHPLAGQGVNLG
FRDARQLAQVLLQRGAQQDCGNIHLLRRYERARKEDVLSMVLTTDVLKKLFNNSNPLLRA
VRNAGLAATNRIAPLKKMLARHALN
NT seq 1158 nt   +upstreamnt  +downstreamnt
atgacatttgacgttttgattataggcggcggtctggttggtgccagtctggccgcagcg
ctcaaatccagcggactgaacatggctctggtggaaacccaacccaccgtcctttccaac
gagggctgggacaaccggatttatgctgtcagccccggcggagctgcctttcttacgcaa
tgcgatgcgtggcaacaactggatatgaaccgtgtgcagccggtggaaaccatgcgcgta
tttggcgatgaggacatggagcttgatttcagtgcttatcaactgggcgtgccggagttg
gcgttcatcctggaaaatcgtctgctgcagcaggtgctgtggcgaggattacaagagcag
gacaatttaaccctgtttcacccggcgcactgtgccagcctggtctggcatgatgatgcc
gcgtacctgcaattggaagatgggcggacgctcaaggcaaaactggtgatcggtgcggat
gggggaaattcctgggtgcgacaacaggccggtatcgttgcaccgcccacactttataac
cagcatggtgtcgttgcgaacttcgcagtcgaaaaattacatcgagccacggcttttcaa
tggtttcagccggacggcattctcgccttgctgccattgccgcagcagatggtttcaatg
gtgtggtcggtaagcccggagaaatcacagatcttgctgcaactgtcgcatgaagagttg
tgtgcacaagttgctgctgcctcgcaccataccctgggtgcattgcaactagtcacctct
cccgccgctttcccgttgcgtttgttgaacctgccacaaatcattaagccacgtctggcg
ctggtgggtgatgccgcgcacaatatacatcctcttgccgggcagggcgtcaacttgggc
ttccgcgatgctcgccagctggcgcaagtgttgctacaacgtggcgcacaacaggattgc
ggtaatatacacttgttacgtcgttatgaacgtgcgcgtaaggaagatgtcctgtccatg
gtgctcacgactgatgtgctaaaaaaattgttcaataacagtaatccgctgctgcgcgcc
gtgcgcaacgctggtcttgcggctaccaaccgtattgcaccgctgaaaaaaatgctggcg
cgccacgcactcaattaa

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