Serratia fonticola DSM 4576: WN53_25545
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Entry
WN53_25545 CDS
T04030
Name
(GenBank) isochorismate synthase
KO
K02552
menaquinone-specific isochorismate synthase [EC:
5.4.4.2
]
Organism
sfw
Serratia fonticola DSM 4576
Pathway
sfw00130
Ubiquinone and other terpenoid-quinone biosynthesis
sfw01053
Biosynthesis of siderophore group nonribosomal peptides
sfw01100
Metabolic pathways
sfw01110
Biosynthesis of secondary metabolites
sfw01240
Biosynthesis of cofactors
Module
sfw_M00116
Menaquinone biosynthesis, chorismate (+ polyprenyl-PP) => menaquinol
Brite
KEGG Orthology (KO) [BR:
sfw00001
]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00130 Ubiquinone and other terpenoid-quinone biosynthesis
WN53_25545
09109 Metabolism of terpenoids and polyketides
01053 Biosynthesis of siderophore group nonribosomal peptides
WN53_25545
Enzymes [BR:
sfw01000
]
5. Isomerases
5.4 Intramolecular transferases
5.4.4 Transferring hydroxy groups
5.4.4.2 isochorismate synthase
WN53_25545
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Motif
Pfam:
Chorismate_bind
DnaG_DnaB_bind
Motif
Other DBs
NCBI-ProteinID:
AKG72212
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Position
complement(5744687..5745988)
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AA seq
433 aa
AA seq
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MEQLSGLLRRLRQQLGHDFPREAGFRQLTLVVPGHLSDLLLEWLAAQVLFPQFYWRHREG
RQEAAVCGALRQFSQPSMAQAFVNAYPAARLWGLTAFDGDAQLFLPRLEILNRQGKCELT
LNLFSEEALSDDAQAALAWLENLLVIKPIENLQVKVLSVQHQPERSGWEIILRDALKAIN
RQQMDKVVLARSSVLTLESPLFAPAMMAASRRVNHQCYHFMLRFDAHSAFLGSSPERLYL
REGKHLLTEALAGTVANHPDEPQAQALAEWLLQDSKNQQENLLVVDDICQRLQGGARAVD
VLPPEVVRLRKVQHLRRRIEGQLNQGDDADCLQRLQPTAAVAGLPRQASLEFIRQHEPFS
RGWYAGSAGYLSAARAEFCVALRSCQIEDARVELYAGAGIVAGSDPAQEWQEIENKAAGL
RTLLQPEHSGQAH
NT seq
1302 nt
NT seq
+upstream
nt +downstream
nt
gtggaacaactttcgggattgctgcggcggctacgtcagcagcttgggcacgattttccc
cgtgaagccggatttcggcagctaacgctggtggttcccggccatctgagcgatttgctg
ctggagtggctggcggcgcaggtgctgttccctcaattctactggcgtcatcgcgaaggg
cggcaggaggcggcagtgtgcggcgctttgcggcagttttcacagccttcaatggcgcag
gcattcgtgaatgcctatccagcagcccgtttatgggggctgactgcctttgacggtgac
gcccagctgtttttgccgcgcctggaaattctcaaccgccaaggtaagtgtgaactgacg
ctaaacctgttttctgaagaggcattgagtgatgacgcccaagcggcgcttgcctggctt
gaaaatctgctggtgatcaaaccgatcgagaatttacaggtgaaagtgctgtcggtgcag
catcagccggaacgttccgggtgggaaatcatactgcgcgatgcgctgaaggcgataaat
cggcagcagatggataaggtggtcttggcgcgcagctcggtgttgacgctggagagtcca
ttgtttgcccctgcgatgatggccgccagccgcagggtgaatcaccaatgctaccacttt
atgctgcgctttgatgcacattccgcatttcttggctccagcccggaaagattgtacctg
cgtgagggaaaacatttgctgaccgaagcgttggcggggacggttgccaaccatcctgat
gagccgcaagcccaggcactggccgagtggttactgcaagacagcaagaaccaacaggaa
aacctgctggtggtcgatgatatctgccagcgtttgcaaggcggtgccagagcggtcgat
gtgttgccaccagaagtggtgcggttgcgcaaggtacagcatctgcggcggcgtattgaa
gggcaactgaaccagggtgatgatgccgattgcctgcaacggctgcaaccgacggctgcg
gtggctgggctgccgcgccaggcctcgcttgagtttatccgccagcatgagcctttttct
cgcggttggtatgccggctctgcgggttatctttctgcggcacgggctgagttctgcgtt
gcgctacgttcctgccagatcgaggatgctcgggttgagctgtatgccggggcggggatt
gtggccggttccgatccggcacaggagtggcaagaaatcgaaaataaggcggcgggctta
cgcactctgttgcagccagaacattctgggcaggcgcattga
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