Theropithecus gelada (gelada): 112617605
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Entry
112617605 CDS
T08041
Symbol
AOC3
Name
(RefSeq) membrane primary amine oxidase isoform X1
KO
K00276
primary-amine oxidase [EC:
1.4.3.21
]
Organism
tge
Theropithecus gelada (gelada)
Pathway
tge00260
Glycine, serine and threonine metabolism
tge00350
Tyrosine metabolism
tge00360
Phenylalanine metabolism
tge00410
beta-Alanine metabolism
tge01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
tge00001
]
09100 Metabolism
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
112617605 (AOC3)
00350 Tyrosine metabolism
112617605 (AOC3)
00360 Phenylalanine metabolism
112617605 (AOC3)
09106 Metabolism of other amino acids
00410 beta-Alanine metabolism
112617605 (AOC3)
Enzymes [BR:
tge01000
]
1. Oxidoreductases
1.4 Acting on the CH-NH2 group of donors
1.4.3 With oxygen as acceptor
1.4.3.21 primary-amine oxidase
112617605 (AOC3)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Cu_amine_oxid
Cu_amine_oxidN3
Cu_amine_oxidN2
DUF1965
Motif
Other DBs
NCBI-GeneID:
112617605
NCBI-ProteinID:
XP_025230108
Ensembl:
ENSTGEG00000014425
LinkDB
All DBs
Position
Unknown
AA seq
692 aa
AA seq
DB search
MHFLTQRLGPGLVDAAQARPSDNCVFSVELQLPPKAAALAHLDRGGPPPAREALAIVFFG
RQPQPNVSELVVGPLPHPSYMRDVTVERHGGPLPYHRRPVLFREYLDIDQMIFDRELPQA
SGLLHHCCFYKRRGRNLVTMTTAPRGLQSGDRATWFGLYYNISGAGFFLHPVGLELLVNH
KALDPARWTIQKVFYQGRYYDSLAQLEAQFEAGLVNVVLIPDNGTGGSWSLKSPVPPGPA
PPLQFHPQGPRFSVQGSRVASSLWTFSFGLGAFSGPRIFDVRFQGERLVYEISLQEALAV
YGGNSPAAMMTRYVDGGFGMGKYTTPLTRGVDCPYLATYVDWHFILESQAPKTIRDAFCV
FEHNQGLPLRRHHSDLYSHYFGGLAETVLVVRSVSTLLNYDYVWDMVFHPSGAIETRFYA
TGYISSAFLFGATGKYGNQVAEHTLGTVHTHSAHFKVDLDVGGLENWVWAEDMVFVPMAV
PWSPEHQLQRLQVTRKLLETEEQAAFLVGGTTPRYMYLASNHSNKWGHPRGYRIQMLSFA
GEPLPQNSSMARGFSWERYQLAVTQRKEEEPSSSSVFNQNDPWAPTVDFSDFINNETIAG
KDLVAWVTAGFLHIPHAEDIPNTVTVGNGVGFFLRPYNFFDEDPSFYSADSIHFRGDQDA
GACEVNPLACLPQAAACAPDLPAFSHGGFSHN
NT seq
2079 nt
NT seq
+upstream
nt +downstream
nt
atgcactttctgacccagcgactggggccagggctggtggatgcggcccaggcccggccc
tcggacaactgtgtcttctcagtggagctacagctgcctcccaaggctgcagccctggct
cacctggacagggggggccccccacctgcccgggaggcactggccatcgtcttctttggc
aggcaaccccagcccaatgtgagtgagctggtggtggggccactgcctcacccttcctac
atgcgggacgtgaccgtggagcgtcatggaggccccctgccctatcaccgacgccccgtg
ctgttccgagagtacctggacatagaccagatgatcttcgacagagagctgccccaggct
tctgggcttctccaccactgttgcttctacaagcgccggggacggaacctggtgacaatg
accacggctccccgtggtctgcaatcaggggaccgggccacctggtttggcctctactac
aacatctcaggggctgggttcttcctgcaccccgtgggcttggagctgctagtgaaccac
aaggccctggaccctgcccgttggaccatccagaaggtgttctatcaaggccgctactac
gacagcctggcccagctggaggcccagtttgaggccggccttgtgaatgtggtgctgatc
ccagacaatggcacaggtgggtcctggtccctgaagtcccctgtgcccccgggtccagct
ccccctctgcagttccatccccagggcccccgcttcagtgtccagggaagtcgagtggcc
tcctcactatggactttctcctttggccttggagcattcagcggcccaaggatctttgac
gttcgcttccagggagaaagactagtttatgagatcagcctccaagaagccttggccgtc
tatggtggaaattccccagcagcaatgatgacccgctatgtggatggaggctttggcatg
ggcaagtacaccacgcccctgacccgtggggtggactgcccctacctggccacctacgtg
gactggcacttcattttggagtcccaggcccccaagacaatacgtgatgccttttgtgta
tttgaacacaaccagggcctccccctgcggcggcaccactcagatctctactcccactac
tttgggggccttgcagaaacagtgctggtcgtcagatctgtgtccaccttgctcaactat
gactatgtgtgggatatggtcttccaccccagtggggccatagaaacccgattctatgcc
acgggctacatcagctcagcattcctctttggtgctaccgggaagtacgggaaccaagtt
gcagagcacaccctgggcacggtccatacccacagcgcccacttcaaggtggatctggat
gtaggaggactggagaactgggtctgggccgaggatatggtctttgtccccatggctgtg
ccctggagccctgagcaccagctgcagaggctgcaggtgacccggaagctgctggagaca
gaggagcaggccgccttccttgtgggaggcaccacccctcgctacatgtacctggccagc
aaccacagcaacaagtggggccacccgcggggctaccgcatccagatgctcagctttgct
ggagagccgctgccccaaaacagctccatggcgagaggcttcagctgggagaggtaccag
ctggccgtgacccagcggaaggaggaggagcccagtagcagcagcgttttcaatcagaat
gacccttgggcccccactgtggatttcagtgacttcatcaacaacgagaccattgctgga
aaggacttggtggcctgggtgacagctggttttctgcacatcccacatgcagaggacatt
cctaacacggtgactgtggggaacggcgtgggcttcttcctccgaccctacaacttcttt
gacgaagacccctccttctactctgccgactccatccacttccgaggggaccaggatgct
ggggcctgtgaggtcaaccccctggcttgcctgccccaggctgctgcctgtgcccccgac
ctccctgccttctcccacgggggcttctctcacaactag
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