Eubacterium callanderi: ELI_1699
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Entry
ELI_1699 CDS
T01336
Name
(GenBank) hypothetical protein
KO
K00832
aromatic-amino-acid transaminase [EC:
2.6.1.57
]
Organism
elm
Eubacterium callanderi
Pathway
elm00270
Cysteine and methionine metabolism
elm00350
Tyrosine metabolism
elm00360
Phenylalanine metabolism
elm00400
Phenylalanine, tyrosine and tryptophan biosynthesis
elm00401
Novobiocin biosynthesis
elm01100
Metabolic pathways
elm01110
Biosynthesis of secondary metabolites
elm01230
Biosynthesis of amino acids
Module
elm_M00024
Phenylalanine biosynthesis, chorismate => phenylpyruvate => phenylalanine
elm_M00025
Tyrosine biosynthesis, chorismate => HPP => tyrosine
Brite
KEGG Orthology (KO) [BR:
elm00001
]
09100 Metabolism
09105 Amino acid metabolism
00270 Cysteine and methionine metabolism
ELI_1699
00350 Tyrosine metabolism
ELI_1699
00360 Phenylalanine metabolism
ELI_1699
00400 Phenylalanine, tyrosine and tryptophan biosynthesis
ELI_1699
09110 Biosynthesis of other secondary metabolites
00401 Novobiocin biosynthesis
ELI_1699
09180 Brite Hierarchies
09181 Protein families: metabolism
01007 Amino acid related enzymes [BR:
elm01007
]
ELI_1699
Enzymes [BR:
elm01000
]
2. Transferases
2.6 Transferring nitrogenous groups
2.6.1 Transaminases
2.6.1.57 aromatic-amino-acid transaminase
ELI_1699
Amino acid related enzymes [BR:
elm01007
]
Aminotransferase (transaminase)
Class I
ELI_1699
BRITE hierarchy
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Aminotran_1_2
Motif
Other DBs
NCBI-ProteinID:
ADO36685
UniProt:
E3GM57
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All DBs
Position
1600709..1601959
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AA seq
416 aa
AA seq
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MSRMVIESSVREAGTDPIFRVAGEAAQRTKELGTEAVINSTIGALMDDHGDLVAFKSVFD
VLKGLPDEQICDYAGIPGIPEFLDKVVDACFKSYRPEGHIRAVATPGGTGAVRHAVCNYT
EFGDQILIPDWYWAPYSTIADENRRETTTFELFDEAGNFNMKSYKAAFTDLLKKQNRVLS
ILNTPAHNPTGYSISLDEWKELTAFYTEMAEANPDARIIILCDIAYIDFAGKGEDARAFM
PLLSGLPENVLPLYAYSASKGFTMYGLRNGAIICVAPTEEIAEEFAAACAYSNRGTWSNG
TRGAMQTLADIMSDDNLRDRFIAEQDFHKGILQKRARAFLDEADKIGLKLCNYCDGFFIS
IPCENPKAVSDLLMEKNVFIVALAKGLRFAPCAVSEEKCRKAPQLILDAIKEVAGC
NT seq
1251 nt
NT seq
+upstream
nt +downstream
nt
atgtcacgtatggttatcgagagttctgtccgggaggccgggacagatccgatttttaga
gttgcaggcgaagctgcgcagagaacaaaggaactgggaaccgaggcagtgatcaattca
acgattggggcattgatggatgatcatggcgatctggttgccttcaaatcagtgtttgat
gttctgaaggggctgccagatgagcagatctgtgattatgccgggattccggggattcca
gagtttttggataaggtggtggacgcctgctttaagtcctacagaccagaaggccatatt
cgcgcagtggcaacaccgggcggaaccggtgctgtgcgccacgcggtgtgcaactacacc
gagtttggtgaccagattctgattccagactggtattgggcgccctacagcaccattgcc
gatgaaaacagacgtgagaccacaacctttgagctgtttgatgaagcgggcaattttaat
atgaaatcctataaagcggcgtttacagacctgcttaaaaagcagaacagagtgctgagc
attctgaatacaccggcgcataacccgaccggctacagtatttcgctggatgaatggaaa
gagctgaccgcgttttataccgaaatggccgaggctaatcctgatgcgagaatcattatt
ctgtgtgatatcgcgtatattgattttgcaggaaagggtgaggacgcgcgggcttttatg
ccgctgctttccggactgccggaaaatgttctgccgctgtacgcctacagcgcttcaaag
ggctttaccatgtatggcctgagaaacggcgctattatctgtgtcgcgccgacggaagaa
attgcagaggaatttgcagcggcctgcgcctattcaaaccgcggcacctggtcaaatgga
accagaggcgccatgcagacgctggcagacattatgtctgatgacaatctgcgcgaccgc
tttatcgcagagcaggatttccacaagggaatcttacagaagcgcgccagggcattcctt
gacgaagcagacaaaattggtctgaagctctgcaattattgtgatggattctttatcagc
attccctgtgaaaatccaaaggctgtcagcgatctgctgatggaaaaaaatgtgttcatt
gttgcgctggcaaagggattgcgttttgcaccatgtgccgtatccgaagaaaaatgccgc
aaagcgccgcagctcattttagacgccattaaagaagtagcaggatgctaa
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