Mercurialis annua (annual mercury): 126683326
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Entry
126683326 CDS
T10153
Name
(RefSeq) ornithine aminotransferase, mitochondrial
KO
K00819
ornithine--oxo-acid transaminase [EC:
2.6.1.13
]
Organism
mean Mercurialis annua (annual mercury)
Pathway
mean00330
Arginine and proline metabolism
mean01100
Metabolic pathways
mean01110
Biosynthesis of secondary metabolites
Module
mean_M00972
Proline metabolism
Brite
KEGG Orthology (KO) [BR:
mean00001
]
09100 Metabolism
09105 Amino acid metabolism
00330 Arginine and proline metabolism
126683326
09180 Brite Hierarchies
09181 Protein families: metabolism
01007 Amino acid related enzymes [BR:
mean01007
]
126683326
Enzymes [BR:
mean01000
]
2. Transferases
2.6 Transferring nitrogenous groups
2.6.1 Transaminases
2.6.1.13 ornithine aminotransferase
126683326
Amino acid related enzymes [BR:
mean01007
]
Aminotransferase (transaminase)
Class III
126683326
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Ortholog
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GFIT
Motif
Pfam:
Aminotran_3
Aminotran_1_2
OAM_dimer
Motif
Other DBs
NCBI-GeneID:
126683326
NCBI-ProteinID:
XP_050235140
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Position
LG5:complement(52844150..52849450)
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AA seq
473 aa
AA seq
DB search
MASTKKPVQNLLSRVCRETRRSYGALPQGSTASSSQELIGLEYEFSAHNYHPVPMVFSQA
RGSSVWDPEGKKYLDFLSAYSAVNQGHCHPKIIKALKEQAENLTLSSRAFYNDKFPVFAE
RLTSMFGYDMVLPMNTGAEGVETALKLARKWGYEKKKIPNDEAIIVSCCGCFHGRTVAVI
SMSCDNEATRGFGPLLPGHLKVDFGDEVALEKIFKERGDKIAGFLFEPIQGEAGVIIPPD
GYLKAVRDLCSKYNILMIADEIQTGLARTGKMLACDWEQVRPDVVILGKALGGGVIPVSA
VLADKDVMLCIQPGEHGSTFGGNPLASAVAVASLDVINDEKLAERSAQSGKELRHQLHKV
QHQFPDYIKEVRGRGLFNAVEFNSRALSPISAYDICLKLKERGILAKPTHDTVVRLTPPL
SMSLEELSESSKALHEVLELDLPTLQKEKPVQASSAAPSTCDRCGRNLYASSD
NT seq
1422 nt
NT seq
+upstream
nt +downstream
nt
atggcatcaacaaagaaaccagttcagaatttgttgagcagagtttgcagggagaccagg
agaagctatggtgctcttcctcaaggatccactgcttcctcttcccaagaactcattgga
ttggaatatgaattcagtgcccacaattatcatccagtcccgatggtattctctcaagcg
agggggtcttctgtatgggatcctgaaggcaaaaagtatctagattttctttcagcctat
tcagcagttaatcagggacattgtcatccaaagataattaaagcattgaaagagcaggca
gaaaatcttacactgagctctagagctttctacaatgacaaatttccagtatttgcagag
cgcctaacaagcatgtttggttatgatatggttctaccaatgaacactggggctgagggt
gtcgaaacggctttgaagttggctaggaaatggggatatgaaaagaaaaaaattcctaat
gatgaggcgattattgtctcttgttgtggctgttttcatgggcgtacggtagctgttatc
tctatgagttgtgacaatgaagcaactcgggggttcgggccattgttgcctggtcatctt
aaggttgattttggcgacgaagttgctcttgagaaaatctttaaagaaagaggagataaa
attgctggattcctttttgaacccatccaaggagaggcaggggttataattccccctgat
ggttacttaaaagctgttagagatctttgttcaaaatataacatcttaatgattgctgac
gaaattcaaaccggtttagcacgaacgggaaaaatgctggcctgcgattgggaacaagtt
cgtcctgatgtagtaatactaggaaaagcattgggtggtggggtaatacctgtaagcgca
gtgctcgcagacaaagatgtaatgctttgcattcaacctggagagcatggaagcacattt
gggggtaatccattggctagtgcagttgctgtcgcctcgctagacgtgatcaacgatgag
aaacttgccgagaggtctgcccaatcggggaaggaactaaggcatcagctgcataaggtt
cagcatcagtttccggattacattaaagaagtccggggaagaggtctattcaatgctgtg
gagtttaacagccgggctttgtctcccatatcagcatatgacatttgcctcaagttaaaa
gagagaggaattcttgctaagcctactcatgataccgtagtccggttaactcctccactc
tccatgagcttggaagagctcagtgaaagctcaaaagcactacatgaagttctggaactt
gatttaccaactttgcagaaagagaaaccagtacaggcttcctcagctgctccttcaaca
tgcgaccgttgcggccgtaatctgtacgcttcttcggattaa
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