KEGG   Dechloromonas aquae: VX159_09265
Entry
VX159_09265       CDS       T10882                                 
Name
(GenBank) chorismate-binding protein
  KO
K01851  salicylate biosynthesis isochorismate synthase [EC:5.4.4.2]
Organism
daj  Dechloromonas aquae
Pathway
daj00130  Ubiquinone and other terpenoid-quinone biosynthesis
daj01053  Biosynthesis of siderophore group nonribosomal peptides
daj01100  Metabolic pathways
daj01110  Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:daj00001]
 09100 Metabolism
  09108 Metabolism of cofactors and vitamins
   00130 Ubiquinone and other terpenoid-quinone biosynthesis
    VX159_09265
  09109 Metabolism of terpenoids and polyketides
   01053 Biosynthesis of siderophore group nonribosomal peptides
    VX159_09265
Enzymes [BR:daj01000]
 5. Isomerases
  5.4  Intramolecular transferases
   5.4.4  Transferring hydroxy groups
    5.4.4.2  isochorismate synthase
     VX159_09265
SSDB
Motif
Pfam: Chorismate_bind
Other DBs
NCBI-ProteinID: WVT82880
LinkDB
Position
2036307..2037632
AA seq 441 aa
MSDFRPLLQAWLDEAANDAAIASWQGQPPGDRLITLQLELGDYTGNWLEYLPVEPTYFCY
QATPAHRDYRLGLGQAWRSEANGNRRLDDLANNLAATRKNWQGTQPAELLLAFPFHAGAQ
PDVPGAVLELPALWLIATGGRARACFSCRLREFSSQQQAVLKLLADGTHPTPEPVACPAQ
MQPINDYAAWEQRVHHALQAIDNGPLKKLVLAREIEVCSEQPFAPATILQRLLNQDGSGL
TYARGTDRQCFLGTTPETLVALDAGKITADALAGTAWPNSPHLEDSKNSREQHYVVTAVA
AALAPWCQPDSVQIAPREKCPAGQLQHWRSRVSGQALPTTTLLQLATALHPTPAVGGFPP
LAAWRWLEAAGEQRTAWYSGGIGRIDAAGNGQLWVALRSALLAGGCARLQAGAGIVAGSD
ALTEYRETEAKLGSMLAALQP
NT seq 1326 nt   +upstreamnt  +downstreamnt
atgagtgattttcgcccgctgttgcaagcctggctggacgaagccgcgaacgatgccgca
atcgcaagctggcaagggcagcctcccggcgaccgcctgatcacgctgcaactcgaactg
ggagactacaccggcaactggcttgaatacctcccggtcgagcccacctatttttgctac
caggccaccccggcccaccgggattaccgacttggtctcggccaggcatggcgtagcgaa
gcgaatggcaaccggcgcctcgacgatcttgcgaacaatctggctgccacccgcaaaaac
tggcaaggaactcagccggccgagttgttgctggcatttcctttccatgccggcgcccaa
cccgatgtccctggggcggtcctcgaattgcctgcgctctggctgatcgccacaggcggt
cgggctcgcgcctgcttcagttgccgcctgcgagaattctccagtcagcagcaagccgtg
ctcaagctactggctgacggcacacatcccacaccggagccggtggcatgcccggcccaa
atgcagccgatcaacgattacgccgcatgggagcagcgcgtccaccatgccttgcaggcg
attgacaacggaccgctgaaaaaactggttctggcccgcgaaatcgaagtctgcagcgaa
cagcccttcgcccctgccaccatcctgcaacgcctgctcaaccaagacggcagcgggctg
acatacgcgcgaggcactgaccgacagtgctttctcggcaccacgccggaaaccctggtc
gcgctcgatgccgggaaaatcactgcagacgcactggccggcaccgcctggcccaactcg
ccgcacctcgaagacagcaagaacagccgcgagcaacactatgtcgtaaccgctgttgct
gccgcactggccccctggtgccaacccgacagcgtacagattgccccccgggagaagtgc
ccggccgggcaactacagcactggcgcagccgggtcagcggacaggccctgccgaccaca
accctactgcaactggctaccgccctgcacccgacgccagccgtcggcggttttccgcca
ttggccgcctggcgctggctggaagctgccggcgagcagcgtaccgcctggtatagcggc
ggaattggcaggattgatgccgccggcaacggtcagctatgggttgccctgcgctcggct
ctgcttgccggcggctgcgccaggctgcaagccggtgccggcatcgtcgccggctcggac
gcactgaccgaataccgggaaaccgaagccaaactcggcagcatgctggccgcgctgcaa
ccctga

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