Alternaria alternata: CC77DRAFT_359116
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Entry
CC77DRAFT_359116 CDS
T05291
Name
(RefSeq) hypothetical protein
KO
K00276
primary-amine oxidase [EC:
1.4.3.21
]
Organism
aalt
Alternaria alternata
Pathway
aalt00260
Glycine, serine and threonine metabolism
aalt00350
Tyrosine metabolism
aalt00360
Phenylalanine metabolism
aalt00410
beta-Alanine metabolism
aalt01100
Metabolic pathways
aalt01110
Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:
aalt00001
]
09100 Metabolism
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
CC77DRAFT_359116
00350 Tyrosine metabolism
CC77DRAFT_359116
00360 Phenylalanine metabolism
CC77DRAFT_359116
09106 Metabolism of other amino acids
00410 beta-Alanine metabolism
CC77DRAFT_359116
Enzymes [BR:
aalt01000
]
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
CC77DRAFT_359116
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
Cu_amine_oxid
Cu_amine_oxidN2
Cu_amine_oxidN3
AGAO-like_N2
Motif
Other DBs
NCBI-GeneID:
29116958
NCBI-ProteinID:
XP_018382293
JGI:
359116
UniProt:
A0A177DCM7
LinkDB
All DBs
Position
Unknown
AA seq
696 aa
AA seq
DB search
MSTEAATNPSPRSEKSVSVQHPLSALSASELRNAAAIIKASWPAHTDLHFKVVTLQEPPK
AEVLKYLEAEHSGKPVPSISRKAFVNYYIRNTSKFHEAVVDLTSGRVDSNILLGPFVHAN
GDGDEIVEIEKLVLADEKVQAEIAKLELPKGTVVISDPWIYGSDGVGDEDRLYQCFLYLR
DPMNSSEADSNHYAMPLPISPVVSTESMRVIRVDLLPTGADNTIKPVEKYKIQPPNEYIP
EAQTLRTDLKPLNVVQPEGASFQVEQQGTSSVISWQKWNFRVGFNQREGMVLYDVRYDNR
SLFYRLSLSDMNIPYADPRHPFHKKSAFDLGDVGAGIMANNLKLGCDCLGSIYYLSAVLA
DNKGDVVEMPNVVCVHEQDAGIGFKHTNYRTGRAVVARNRELVLQSIITVSNYEYILAFI
FNQAGEIDYEIRATGILSTQPIDEGVEVPFGTVVHPGVLAVHHQHIFSLRVDPMLDGYDN
RLVYDEAFAMPRSDFNPHGTGYYVQETVVEKSGGYDIAYENNRTFKIQNPNVRNPINGKP
VAYKIQAPPFQKILSDKDSFNYKRAEFSDHNIYVVKHKDGELYAGGLYTNQSRGGSGVRS
WAERNENVKDTDFVVYIQAGINHVPRIEDFPVMPCEIIKIHMKPVNFFDKNPALDVPPSE
QAFNKSSLLSEQHQQPSVTATIGEDGQCCAPTTAKL
NT seq
2091 nt
NT seq
+upstream
nt +downstream
nt
atgtccacagaagccgccaccaaccccagcccgcggagcgagaagtcagtttctgtgcag
catcctctatcggccttatcggcatcagaacttcggaatgccgcggcaatcattaaagct
tcatggcctgcacacacagatttgcacttcaaagtcgttacgctgcaggaaccaccaaag
gctgaagtactaaagtacttggaggctgagcatagcggcaagccagttccatctatctca
aggaaagcctttgttaactactacattcggaatactagcaagtttcacgaggccgttgta
gacttgacctcagggcgtgtcgactccaatatcttgctagggccgttcgtccacgccaat
ggagatggcgacgagattgtcgagatcgaaaaactcgttctggcagatgagaaggtgcaa
gccgaaatagccaagctcgagttgcccaaaggcacagtagtgattagcgatccctggatc
tacggttctgatggtgtcggagacgaagaccgactgtaccaatgcttcctctacttgagg
gatcctatgaactcatcagaggccgactccaaccactacgcaatgccccttccaatctca
cctgttgtgagcacagaaagtatgcgtgtcatccgggttgatttgctaccaactggagca
gacaacacaatcaaaccagttgagaagtacaagatacaaccgcccaacgagtatataccc
gaggcccagacgctgcgaaccgatctcaagccgcttaatgtcgttcaacccgagggtgcg
agcttccaggtcgaacagcaaggcacatcgagcgtcatttcatggcaaaaatggaacttt
cgagttggcttcaaccagcgcgaaggcatggtgctgtacgacgtccgttacgataaccgt
agtttgttttaccgattgagcttgagcgacatgaacattccatatgcggacccgaggcac
ccctttcataaaaagagtgcgtttgatttgggcgatgttggtgccggcatcatggcgaac
aacctcaagctgggctgcgactgtctgggctccatctactatctaagcgcagtgttggcc
gataataagggtgatgttgttgaaatgcccaatgttgtctgtgttcacgagcaagacgcc
ggaatcggtttcaagcacaccaattatcgcacaggccgtgccgtcgttgcccgaaatcgc
gagttggtactacagagtatcatcaccgtaagcaactacgagtacatcctggccttcatt
ttcaaccaggccggagaaatcgactatgagatcagagccactggcattctgagcacccaa
cctatcgacgagggtgtagaagtgccctttggtacagttgtgcatccaggtgtgttggct
gtccaccaccagcacatattctcgttgcgtgttgatcccatgctcgacggctacgacaat
cgtctggtatacgacgaagcgtttgcgatgccgcgttcagacttcaacccccatggtact
ggctactacgtccaggagaccgtcgtggagaagtctggcggttatgacattgcgtacgag
aacaaccgtaccttcaagattcagaatcccaacgtgcgaaatcctattaatggaaagcca
gtcgcatacaagatacaagcgccaccattccagaagatcctatcagacaaggactcattc
aactacaagcgcgccgagttctcagaccacaacatctatgtcgtcaagcacaaagatggt
gagctgtatgcgggtgggctgtacaccaatcaatctcgaggcggatctggtgtacgttca
tgggcggagaggaacgagaacgtcaaggacaccgactttgtggtctacatccaagcagga
atcaaccacgttcctaggatcgaggattttcctgtgatgccgtgtgagattatcaagatt
cacatgaagccggtcaactttttcgacaagaaccctgcgttggatgtaccgccaagcgag
caggcgtttaacaagagtagcttgctgagtgagcagcaccagcaacctagtgtgactgcg
acgattggtgaggatggtcaatgttgtgcgccgacgacagcgaagctgtag
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