Erwinia sp. E602: GKQ23_06285
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Entry
GKQ23_06285 CDS
T10706
Symbol
tyrA
Name
(GenBank) bifunctional chorismate mutase/prephenate dehydrogenase
KO
K14187
chorismate mutase / prephenate dehydrogenase [EC:
5.4.99.5
1.3.1.12
]
Organism
erwe Erwinia sp. E602
Pathway
erwe00400
Phenylalanine, tyrosine and tryptophan biosynthesis
erwe00401
Novobiocin biosynthesis
erwe01100
Metabolic pathways
erwe01110
Biosynthesis of secondary metabolites
erwe01230
Biosynthesis of amino acids
Module
erwe_M00024
Phenylalanine biosynthesis, chorismate => phenylpyruvate => phenylalanine
erwe_M00025
Tyrosine biosynthesis, chorismate => HPP => tyrosine
Brite
KEGG Orthology (KO) [BR:
erwe00001
]
09100 Metabolism
09105 Amino acid metabolism
00400 Phenylalanine, tyrosine and tryptophan biosynthesis
GKQ23_06285 (tyrA)
09110 Biosynthesis of other secondary metabolites
00401 Novobiocin biosynthesis
GKQ23_06285 (tyrA)
Enzymes [BR:
erwe01000
]
1. Oxidoreductases
1.3 Acting on the CH-CH group of donors
1.3.1 With NAD+ or NADP+ as acceptor
1.3.1.12 prephenate dehydrogenase
GKQ23_06285 (tyrA)
5. Isomerases
5.4 Intramolecular transferases
5.4.99 Transferring other groups
5.4.99.5 chorismate mutase
GKQ23_06285 (tyrA)
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Motif
Pfam:
CM_2
PDH_N
PDH_C
DUF2325
ApbA
SDR
Motif
Other DBs
NCBI-ProteinID:
QUG74631
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Position
1078825..1079946
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AA seq
373 aa
AA seq
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MVAELTALRDQIDETDKALLDLLAKRLALVAEVGEVKSRYGLPIYVPEREASMLASRRKE
AEQLGVPPDLIEDVLRRVMRESYTSENDKGFKTLNPGLRSVVIVGGRGQMGRLFERMLTL
SGYQVEILDKEDWHRADALLANAGMVIVSVPIHLTEQVIAELPPLPQDCILVDLCSVKNK
PLQAMLAAHGGPVLGLHPMFGPDSGSLAKQVVVWCDGRQPEAYQWFLEQIQVWGARLHRI
SAVEHDQNMAFIQALRHFATFAYGLHLAEENVQLDQLLALSSPIYRLELAMVGRLFAQDP
QLYADIIMSSESNLALIKRYYKRFGEAIGLLEQGDKQAFIASFRRVEQWFGDHAQRFQAE
SRILLKQANDSRP
NT seq
1122 nt
NT seq
+upstream
nt +downstream
nt
atggtggctgagctgaccgcactacgcgatcaaatcgatgaaacggataaggcgctgctg
gatctgctggcgaaacggctggcgctggtagcggaagtgggtgaggtgaaaagccgctac
gggctgccgatttacgtccccgagcgtgaggcctccatgctggcctcgcgccgcaaagag
gcggaacagctgggcgtgcccccggatctgatcgaagatgtgctgcgccgcgtgatgcgc
gagtcgtacaccagtgaaaacgataagggctttaaaacgcttaatccgggactgcgctcg
gtggtgatcgtcggcggccgcggccagatggggcggctgtttgaaagaatgctgaccctg
tccggttaccaggtcgagatcctcgataaagaggactggcatcgcgccgacgcgctgctg
gcgaatgccggtatggtgatcgtcagcgtgccgatccatctgaccgaacaggtgatcgcc
gaactgccgccgctgccgcaggactgcatccttgtcgatctctgctcggtgaagaacaaa
ccgctgcaggcgatgctggccgcgcacggcggtcctgtacttggcctgcacccgatgttt
ggcccggacagcggcagcctggcaaagcaggtggtggtgtggtgcgacggccgtcagccg
gaagcctatcagtggttcctggagcagatccaagtgtggggcgcgcgtctgcaccgcatc
agcgcggtggagcacgaccagaatatggcctttattcaggcgctgcgccactttgccacc
ttcgcctacggcctgcacctggccgaggagaacgtgcagctggaccagctgctggcgctg
tcgtcaccgatctaccggctggagctggcaatggtcgggcgtctgtttgcccaggatcca
cagctttacgctgacattatcatgtcgtcggagagtaacctggcgctgatcaaacgctac
tacaagcggtttggcgaagcgattgggctgctggagcagggcgataagcaggcgtttatc
gccagcttccgccgcgttgagcagtggtttggtgaccacgcccagcgcttccaggccgag
agccgcatcctgctgaagcaggctaacgacagccggccgtaa
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