KEGG   Haemophilus ducreyi: HD_1853
Entry
HD_1853           CDS       T00135                                 
Symbol
menD
Name
(GenBank) menaquinone biosynthesis protein
  KO
K02551  2-succinyl-5-enolpyruvyl-6-hydroxy-3-cyclohexene-1-carboxylate synthase [EC:2.2.1.9]
Organism
hdu  Haemophilus ducreyi
Pathway
hdu00130  Ubiquinone and other terpenoid-quinone biosynthesis
hdu01100  Metabolic pathways
hdu01110  Biosynthesis of secondary metabolites
hdu01240  Biosynthesis of cofactors
Module
hdu_M00116  Menaquinone biosynthesis, chorismate (+ polyprenyl-PP) => menaquinol
Brite
KEGG Orthology (KO) [BR:hdu00001]
 09100 Metabolism
  09108 Metabolism of cofactors and vitamins
   00130 Ubiquinone and other terpenoid-quinone biosynthesis
    HD_1853 (menD)
Enzymes [BR:hdu01000]
 2. Transferases
  2.2  Transferring aldehyde or ketonic groups
   2.2.1  Transketolases and transaldolases
    2.2.1.9  2-succinyl-5-enolpyruvyl-6-hydroxy-3-cyclohexene-1-carboxylic-acid synthase
     HD_1853 (menD)
SSDB
Motif
Pfam: TPP_enzyme_M_2 TPP_enzyme_N TPP_enzyme_C DUF2023
Other DBs
NCBI-ProteinID: AAP96594
UniProt: Q7VKM9
LinkDB
Position
1556101..1557810
AA seq 569 aa
MSTNSSFNRSWAKVILNALLRYGVKHFCIAPGSRSTPLTLEALQLQHTQQAECHSHFDER
GLAFFALGMAKATNDPVAIIVTSGTAVANLYPALIEASLTQHKLIVLSADRPPELIGCGV
NQAITQPGIFADYPIANIHLPKASTDYNASWLAATIEQACVNQQQQGGVIHINAPFAEPL
YETDENEINNTPWLKPLQSWLIKPTAKWLNSQSIQSEVSMHENWDYWRTKRGVIIVGKLP
VEQGVGIKAWAETLGWCLLTDIQSCVDASLPYADIWLSNNTVHERLLNADIVIQFGSQII
SKRVNKYLADFKGEFWQVDEYQRYLNPFAHRQTRFVAKAHHFLRVHPPLRQKPWLLEPLA
LSQFCASFIEQQVGGSLNEASLAHHIEQVLATNGNLFIGNSLFVRLVDALCKLPEGYPVY
TNRGASGIDGLIATMAGIAKASGQPTVGVVGDISALHDLNSISLLSKINHPSILFVINNS
GGAIFDMLPVEARVKEQFYRLSHNYEFSQVAAMFGIEYIRPFTWADLKAKLKLAYGRKSA
TIVEIKVNDQDGSNLYKSLIKQISQAEIA
NT seq 1710 nt   +upstreamnt  +downstreamnt
atgagtacgaacagttctttcaatcgttcttgggcaaaagttattttaaatgccctatta
cgttatggtgttaaacatttttgtattgcgcctggttcacgttccacaccgttaacgctt
gaagcacttcaattacaacacactcaacaagccgaatgccatagtcattttgatgaacgc
ggcttagcgttttttgcactcggtatggcaaaagcaaccaacgatccggttgcgattatt
gtgacttcaggcactgccgtggctaatctttatcctgcgttaattgaggccagccttaca
caacataaactgattgttctttctgctgatcgtccacctgaattaatcggttgtggcgtt
aaccaagcaatcacacaaccgggtatttttgccgattatcctatcgcgaatattcatcta
cccaaagcatcaactgactataatgcaagttggttagcggccactatcgaacaagcttgt
gttaatcaacaacagcaaggcggagtaattcatattaacgctccttttgccgagccctta
tacgaaacagatgaaaacgaaattaacaatacgccatggcttaaaccattacaaagttgg
ttaattaagccaacagccaaatggctcaatagtcaatccattcaaagcgaagtatcaatg
cacgaaaattgggactattggcgcactaaacgaggcgttattattgtgggtaaattgccg
gttgaacaaggcgttggcataaaagcgtgggcagaaacattaggttggtgtttattaacg
gatatacaatcttgtgttgatgctagtttgccttatgcggatatttggctatcaaataat
accgtacatgaacgcctattaaacgctgatattgttattcaatttggctcgcagattatt
agtaaacgcgttaacaaatatttagcggattttaaaggcgaattttggcaagtagatgaa
tatcaacgttatcttaatccatttgcacaccgtcaaactcgttttgtggctaaggcacac
catttcttacgtgttcatcctccattacggcaaaaaccgtggctattagaaccgcttgct
ttgtcacaattctgtgctagctttattgaacagcaagtaggcggaagcttaaatgaagcc
tcattagcgcatcatattgaacaagttttagcgactaacggcaatttatttattggtaat
agtttatttgtaagattagttgatgccttatgtaaattgcctgaaggttacccggtttac
acaaaccgtggtgcaagtggtattgatggcttaatcgccactatggcaggcatcgccaaa
gccagtgggcaaccgaccgttggtgtagtaggtgatatttcggctttacacgatttaaat
tcaatttcattattaagcaaaataaaccacccgtctatcttgtttgtgattaacaatagt
ggtggtgctatttttgatatgttgcctgttgaagcgcgtgttaaagaacagttttaccgt
ttatcgcataactatgaattttcacaagtggccgccatgtttggcattgagtatatccga
ccatttacttgggctgatttaaaagctaaattaaaattagcctatggacgcaaaagcgcc
actattgttgaaatcaaagtgaatgatcaagatggtagcaatttatataaatcgttaatt
aaacaaatttcgcaagcggaaattgcttaa

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