KEGG   Escherichia coli UM146: UM146_01995
Entry
UM146_01995       CDS       T02000                                 
Name
(GenBank) hypothetical protein
  KO
K18800  2-polyprenylphenol 6-hydroxylase [EC:1.14.13.240]
Organism
elu  Escherichia coli UM146
Pathway
elu00130  Ubiquinone and other terpenoid-quinone biosynthesis
elu01100  Metabolic pathways
elu01110  Biosynthesis of secondary metabolites
elu01240  Biosynthesis of cofactors
Module
elu_M00117  Ubiquinone biosynthesis, prokaryotes, chorismate (+ polyprenyl-PP) => ubiquinol
Brite
KEGG Orthology (KO) [BR:elu00001]
 09100 Metabolism
  09108 Metabolism of cofactors and vitamins
   00130 Ubiquinone and other terpenoid-quinone biosynthesis
    UM146_01995
Enzymes [BR:elu01000]
 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
     UM146_01995
SSDB
Motif
Pfam: FAD_binding_3 DAO Lycopene_cycl Trp_halogenase SE NAD_binding_8 Thi4 Pyr_redox_2 FAD_binding_2 Pyr_redox HI0933_like Pyr_redox_3 P11_C
Other DBs
NCBI-ProteinID: ADN69826
LinkDB
Position
412469..413671
AA seq 400 aa
MQSVDVAIVGGGMVGLAVACGLQGSGLRVAVLEQRVPEPLAADAPPQLRVSAINAASEKL
LTRLGVWQDILSRRASCYHGMEVWDKDSFGHISFDDQSMGYSHLGHIVENSVIHYALWNK
ARQSSDITLLAPAELQQVAWGENETFLTLKDGSMLTARLVIGADGANSWLRNKADIPLTF
WDYQHHALVATIRTEEPHDAVARQVFHGEGILAFLPLSDPYLCSIVWSLSPEEALRMQQA
SEDEFNRALNIAFDNRLGLCKVESERLVFPLTGRYARQFAAHRLALVGDAAHTIHPLAGQ
GVNLGFMDAAELIAELKRLHRQGKDIGQYIYLRRYERSRKHSAALMLAGMQGFRDLFSGA
NPAKKLLRDIGLKLADTLPGVKPQLIRQAMGLNDLPEWLR
NT seq 1203 nt   +upstreamnt  +downstreamnt
atgcaaagtgttgatgtagccattgttggtggcggcatggtggggctggcggttgcctgc
ggcttacaggggagcggcttacgcgttgccgtactggagcagcgcgtaccggaacctctg
gcggcggatgcaccaccacaactgcgcgtttcggctatcaatgccgccagcgaaaaatta
ctcacccgtcttggcgtctggcaggacattctctctcgtagggccagttgttatcacggt
atggaagtgtgggacaaagacagttttggtcacatttcgtttgacgatcaaagcatgggc
tatagtcatcttgggcatatcgttgaaaactcagtgattcactacgcgctgtggaacaaa
gcccggcagtcgtcagatatcactctgttggcccccgcagaattacagcaggtcgcctgg
ggagaaaatgaaaccttcctgacgttgaaagatggcagcatgttaacggcgcgtctggtg
attggcgcagacggcgctaattcttggttgcgcaacaaagccgatattccgctgactttc
tgggattatcagcatcacgcgctggtggcgaccattcgcacggaagaaccgcatgatgcg
gtggcgcggcaggttttccatggcgaaggcattctggcctttttaccgcttagcgatccg
tatctttgctcgattgtctggtcactgtcgccagaggaagcgctgcggatgcagcaggct
agtgaagacgaatttaatcgcgcgttaaatatcgcttttgataatcgcctgggcttatgc
aaggttgaaagtgagcgcctggtgttcccgctaacggggcgttatgcgcgccagtttgcc
gcgcaccgtctggcgctggtgggcgacgccgcgcataccattcacccgttggcggggcag
ggggtaaatctcggctttatggatgctgcagagctgattgctgaactgaaacggttgcat
cgtcagggtaaagacatcgggcagtacatttacctgcgtcgctatgagcgtagccgcaag
cacagcgcggcgctgatgctggctggtatgcagggattccgcgatctgttttccggggct
aatccggcgaaaaaattgctgcgtgatattggtctgaaactggctgatacgcttcctggc
gttaagccacaacttattcgtcaggcaatgggattaaacgatttgcctgaatggctgcgt
taa

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