KEGG   Vibrio splendidus: LTQ54_04285
Entry
LTQ54_04285       CDS       T08240                                 
Name
(GenBank) isochorismate synthase MenF
  KO
K02552  menaquinone-specific isochorismate synthase [EC:5.4.4.2]
Organism
vsl  Vibrio splendidus
Pathway
vsl00130  Ubiquinone and other terpenoid-quinone biosynthesis
vsl01053  Biosynthesis of siderophore group nonribosomal peptides
vsl01100  Metabolic pathways
vsl01110  Biosynthesis of secondary metabolites
vsl01240  Biosynthesis of cofactors
Module
vsl_M00116  Menaquinone biosynthesis, chorismate (+ polyprenyl-PP) => menaquinol
Brite
KEGG Orthology (KO) [BR:vsl00001]
 09100 Metabolism
  09108 Metabolism of cofactors and vitamins
   00130 Ubiquinone and other terpenoid-quinone biosynthesis
    LTQ54_04285
  09109 Metabolism of terpenoids and polyketides
   01053 Biosynthesis of siderophore group nonribosomal peptides
    LTQ54_04285
Enzymes [BR:vsl01000]
 5. Isomerases
  5.4  Intramolecular transferases
   5.4.4  Transferring hydroxy groups
    5.4.4.2  isochorismate synthase
     LTQ54_04285
SSDB
Motif
Pfam: Chorismate_bind
Other DBs
NCBI-ProteinID: UOE85243
LinkDB
Position
1:complement(914875..916182)
AA seq 435 aa
MSHFQQTISALIERVQNAQASEVRCVEVLTQKPSFAFIEWLHAQPLFPKFYWQSRDTREE
VVALGQLHTFSDPAPAYAILGEDQRIWGGRSFDGHTAKNRRCMESFFFLPQVELIRFDDT
WSLAVNLSPDRVASINALNKLSVEAAILAPLSAHIEQINHVPEREQWGNLVDKVLQGISD
EEYKKVVLARKTTLQLDAPICAAQLLKASYLQNHHSFHFMLVLDSKHSFIGSTPERLYSR
YGAELDTEALAGTIGRGENATEDMELANWLSQDSKNLNENQYVVDDIIERLTPHSQTVHV
EKDTRLVRLRKVQHLKRNIHAQLNNGVNGVQLLAALQPTAAVAGLPRKEAMDFILEHEPF
ARGWYAGSVGYISHQRAEFCVAIRSALVVNDQVQLFAGAGIVPGSVAEHEWQELNKKMST
LLSLISDHPPLGVAS
NT seq 1308 nt   +upstreamnt  +downstreamnt
ttgtcacatttccagcaaactatctccgctttgattgagcgagtacaaaatgcccaagca
agtgaagttcgttgtgttgaagttctaacgcaaaaaccatcgtttgcatttatagaatgg
cttcatgctcaaccgctctttccaaagttctactggcagtcacgtgacactcgtgaagag
gtcgtcgcgctcggtcaattgcacactttttctgatcctgctcccgcgtacgcaattctt
ggtgaagaccaacgaatctggggtggacgttcatttgatgggcataccgcaaagaaccgt
cgttgcatggaatcgtttttcttccttcctcaggttgaattaatccgctttgacgacact
tggtcgctagcggttaacttgtctcctgatcgcgttgcctccattaatgctttgaataag
ctttctgtagaagcggcgatattggcacctttgtcggctcacattgaacagattaaccac
gttccagaacgagaacagtggggtaatttggtcgataaagtgcttcagggcattagcgac
gaagagtacaagaaagtggttttagcgcgtaaaaccacactgcagcttgatgcgccaatc
tgcgcggctcaattactcaaggcaagctacctgcaaaaccatcacagctttcactttatg
ttggtattggattctaaacacagctttattggctcaacgccagagcgtttgtatagccga
tatggggcagagcttgatactgaagctctagcgggaaccattggtcgcggagaaaacgcg
acagaagatatggagttagcgaactggctttctcaagacagtaaaaacctcaatgagaac
cagtatgtggtagatgacatcattgagcgcctcactcctcattctcaaacggtccatgtt
gaaaaggatacgcgtcttgtgcgcttgcgtaaggtgcagcatcttaagcgtaatatccac
gctcagcttaataatggcgttaacggtgtgcagttgcttgctgcattacagccgactgct
gcggtggcgggtttaccgcgtaaagaggcgatggatttcattcttgaacacgaaccgttt
gcgcgaggctggtatgcaggttctgttggctatatcagtcatcagagagctgagttttgt
gtcgcgattcgaagtgcgctagttgtaaacgatcaagtacagctgtttgctggtgcgggg
atcgtgccgggatcggttgctgagcatgaatggcaagaattgaacaagaagatgtcgacc
ttactcagcttgatttcggatcacccgccgttgggtgtggcgtcatga

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