Schlegelella aquatica: OMP39_14270
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Entry
OMP39_14270 CDS
T08587
Name
(GenBank) aspartate/tyrosine/aromatic aminotransferase
KO
K00832
aromatic-amino-acid transaminase [EC:
2.6.1.57
]
Organism
saqa
Schlegelella aquatica
Pathway
saqa00270
Cysteine and methionine metabolism
saqa00350
Tyrosine metabolism
saqa00360
Phenylalanine metabolism
saqa00400
Phenylalanine, tyrosine and tryptophan biosynthesis
saqa00401
Novobiocin biosynthesis
saqa01100
Metabolic pathways
saqa01110
Biosynthesis of secondary metabolites
saqa01230
Biosynthesis of amino acids
Module
saqa_M00024
Phenylalanine biosynthesis, chorismate => phenylpyruvate => phenylalanine
saqa_M00025
Tyrosine biosynthesis, chorismate => HPP => tyrosine
Brite
KEGG Orthology (KO) [BR:
saqa00001
]
09100 Metabolism
09105 Amino acid metabolism
00270 Cysteine and methionine metabolism
OMP39_14270
00350 Tyrosine metabolism
OMP39_14270
00360 Phenylalanine metabolism
OMP39_14270
00400 Phenylalanine, tyrosine and tryptophan biosynthesis
OMP39_14270
09110 Biosynthesis of other secondary metabolites
00401 Novobiocin biosynthesis
OMP39_14270
09180 Brite Hierarchies
09181 Protein families: metabolism
01007 Amino acid related enzymes [BR:
saqa01007
]
OMP39_14270
Enzymes [BR:
saqa01000
]
2. Transferases
2.6 Transferring nitrogenous groups
2.6.1 Transaminases
2.6.1.57 aromatic-amino-acid transaminase
OMP39_14270
Amino acid related enzymes [BR:
saqa01007
]
Aminotransferase (transaminase)
Class I
OMP39_14270
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Motif
Pfam:
Aminotran_1_2
Motif
Other DBs
NCBI-ProteinID:
UZD54808
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Position
3112937..3114130
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AA seq
397 aa
AA seq
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MFQHVDAYAGDPILTLNEEFQKDPRPHKVNLSIGIYFDDAGRLPVMSAVREAEASLLREI
GPRPYQPMEGAANYRQAVQHLLFGRDHEAVKSGRIATLQTLGGSGGLKVGGDFLKRYFPQ
SQVWVSDPTWDNHRAMFEGAGFQVNTYPYYDAATGGLKFEAMFATLQALPPHSIVLLHAC
CHNPTGVDLSREQWGRLIPLIRERQLLPYVDIAYQGFGDGIEEDAYAIRALADAGVSFFV
ANSFSKSFSLYGERCGGLSVVCPDRDQAERVLGQLKAAVRRNYSSPPTHGGQIVARVLQT
PALYELWASELGAMRERIQAMRQRLHAVLCAKLPGRNFDYFVQQRGMFSYTGLTPAQVDR
LREEHAVYLVRSGRMCVAGLNQHNVEPVAEAMAAVLA
NT seq
1194 nt
NT seq
+upstream
nt +downstream
nt
atgttccagcatgtcgacgcctacgccggcgaccccatcctcacgctcaacgaagagttc
cagaaggacccccgcccccacaaggtcaacctgagcatcggcatctacttcgacgacgcc
ggccggctgcccgtgatgagcgcggtgcgcgaggccgaggcctcgctgctgcgcgagatc
ggcccgcgcccctaccagccgatggaaggcgcggccaactaccgccaggccgtgcaacac
ctgctgttcggccgcgatcacgaagccgtcaagagcggccgcatcgcgacgctgcagacg
ctcggcggctccggcggcctcaaggtgggcggcgacttcctcaagcgctacttcccgcag
tcgcaggtgtgggtgagcgacccgacctgggacaaccaccgcgcgatgttcgagggcgcc
ggcttccaggtcaacacctatccgtactacgacgccgccaccggcgggctcaagttcgag
gccatgttcgccacgctgcaggccctgccgccgcacagcatcgtgctgctgcacgcctgc
tgccacaaccccaccggcgtggacctgtcgcgcgagcagtggggccggctgatcccgctg
atccgcgagcgccagctcctgccgtacgtggacatcgcctaccagggcttcggcgacggc
atcgaggaagacgcctacgccatccgcgcgctggccgacgcgggcgtgagcttcttcgtc
gcgaactcgttctccaagagcttctcgctctatggcgagcgctgcggcggcctgagcgtc
gtgtgccccgaccgcgaccaagccgagcgcgtgctgggccagctcaaggccgccgtgcgg
cgcaactattccagcccgcccacccacggcggccagatcgtcgcgcgtgtgctgcaaacg
cccgccctgtacgagctgtgggccagcgagctgggcgcgatgcgcgagcgcatccaggcc
atgcgccagcgcctgcacgcggtgctctgcgccaagctgcccggccgcaacttcgactac
ttcgtccagcagcgcggcatgttcagctacacgggcctcacgcccgcgcaggtggaccgg
ctgcgcgaggagcacgcggtgtacctcgtgcgctcgggccgcatgtgtgtggccggcctg
aaccagcacaacgtggagccggtggccgaggcgatggcggcggtgctcgcctga
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