KEGG   Massilia antarctica: IV454_25410
Entry
IV454_25410       CDS       T08186                                 
Name
(GenBank) U32 family peptidase
  KO
K24844  2-(all-trans-polyprenyl)phenol 6-hydroxylase (prephenate) UbiU [EC:1.97.1.15]
Organism
manc  Massilia antarctica
Pathway
manc00130  Ubiquinone and other terpenoid-quinone biosynthesis
manc01100  Metabolic pathways
manc01110  Biosynthesis of secondary metabolites
manc01240  Biosynthesis of cofactors
Module
manc_M00989  Ubiquinone biosynthesis, O2-independent, prokaryotes, chorismate (+ polyprenyl-PP) => ubiquinol
Brite
KEGG Orthology (KO) [BR:manc00001]
 09100 Metabolism
  09108 Metabolism of cofactors and vitamins
   00130 Ubiquinone and other terpenoid-quinone biosynthesis
    IV454_25410
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01002 Peptidases and inhibitors [BR:manc01002]
    IV454_25410
Enzymes [BR:manc01000]
 1. Oxidoreductases
  1.97  Other oxidoreductases
   1.97.1  Sole sub-subclass for oxidoreductases that do not belong in the other subclasses
    1.97.1.15  2-(all-trans-polyprenyl)phenol 6-hydroxylase (prephenate)
     IV454_25410
Peptidases and inhibitors [BR:manc01002]
 Peptidases of unknown catalytic type
  Family U32
   IV454_25410
SSDB
Motif
Pfam: Peptidase_U32
Other DBs
NCBI-ProteinID: QPI48812
LinkDB
Position
complement(5768993..5770027)
AA seq 344 aa
MNMMSNSSDGATPFELVCPAGSLPALKAAVDNGADCVYLGFRDATNARNFAGLNFDEAAI
EQGIAYSHARGRKVLLALNTYPQPSAGALWRRAIDRAAGAGIDAVILADPGLMRYAAERY
PALRLHLSVQGSATNYEAINFFHRHFGIARAVLPRVLSVAQVEQVVRNTPVEIEVFGFGS
LCVMVEGRCALSSYVTGESPNTHGVCSPAKAVRWQQTPAGLESRLNEVLIDRYADGEQAS
YPTLCKGRFDVAGEQFYAIEEPASLNTLELLPQLIELGVSAIKIEGRQRSPAYVAQVTRV
WREAIDQYRANPKRFSAKQAWMADLNKVAEGQQHTLGAYHRSWK
NT seq 1035 nt   +upstreamnt  +downstreamnt
atgaacatgatgtcaaattcttccgacggcgccacgccgttcgaactggtgtgtccggcc
ggcagcctgccggccctcaaggcggccgtggacaacggcgccgactgcgtctacctcggc
tttcgcgacgccaccaacgcacgcaacttcgcaggcctgaacttcgacgaggccgcgatc
gaacagggcatcgcctacagccatgcgcgcgggcgcaaggtgctgcttgcgctgaacacc
tatccgcagccgtccgccggtgcgctgtggcggcgcgccattgaccgcgccgccggcgcc
ggcatcgacgcggtgatcctggccgacccgggcctgatgcgctacgcggccgaacgctat
ccggcgctgcggctgcacctgtcggtgcagggttcggccaccaactacgaggccatcaac
ttcttccaccgccacttcggcattgcgcgcgcggtgctgccgcgggtgctgtcggtggcg
caggtggagcaggtggtgcgcaataccccggtcgagatcgaggtgttcggcttcggcagc
ctgtgcgtgatggtcgaagggcgctgcgcgctgtcgtcctatgtcacgggcgagtcgccc
aacacccacggcgtgtgctcgccggccaaggcggtgcgctggcagcagaccccggccgga
ctggagtcgcgcctgaacgaggtgctgatcgaccgctacgccgacggcgagcaggccagc
tatccaaccctgtgcaagggccgtttcgacgtcgcgggcgaacagttttacgccatcgag
gaaccggccagcctgaatacccttgaattgctgccgcagctgatcgagctgggggtgagc
gcgatcaagatcgaagggcgccagcgcagtcctgcgtacgtggcgcaggtaacgcgcgtc
tggcgcgaggcgatcgaccagtaccgcgccaatccgaagcgtttttcggcaaagcaggca
tggatggccgatctgaacaaggtggcagaggggcagcagcatacgctgggcgcctaccac
cgctcatggaaatag

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