Fusarium musae: J7337_006406
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Entry
J7337_006406 CDS
T09538
Name
(RefSeq) hypothetical protein
KO
K00276
primary-amine oxidase [EC:
1.4.3.21
]
Organism
fmu
Fusarium musae
Pathway
fmu00260
Glycine, serine and threonine metabolism
fmu00350
Tyrosine metabolism
fmu00360
Phenylalanine metabolism
fmu00410
beta-Alanine metabolism
fmu01100
Metabolic pathways
fmu01110
Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:
fmu00001
]
09100 Metabolism
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
J7337_006406
00350 Tyrosine metabolism
J7337_006406
00360 Phenylalanine metabolism
J7337_006406
09106 Metabolism of other amino acids
00410 beta-Alanine metabolism
J7337_006406
Enzymes [BR:
fmu01000
]
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
J7337_006406
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Gene cluster
GFIT
Motif
Pfam:
Cu_amine_oxid
DUF1965
Cu_amine_oxidN2
Motif
Other DBs
NCBI-GeneID:
68314262
NCBI-ProteinID:
XP_044679727
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Position
5:171954..174032
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AA seq
543 aa
AA seq
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MRFSNFFVSASLGNLALGAAFSTGRLESRKKGHGTDCSLNQTTTSAPHKNFWGSLTTQET
KDVLALLHSNATGFNLTAAADAGSRDNKIMSVELMMPNKTDVLPLLSDSTGTPERYALAS
LMFGAAESAYVQEFKVGPLPITNASYVMPYTFTNTRGDGKIPVVNPDAEDYANFNLEIMK
GAEDVTKRLWNLTVEDGLQMPLAFAAPLTVTEDKVIMWQGFNAPVTSIYDTISLLPLGLY
MRSDITGRDPSKWKVTGWVYNNTFYKDLDAFRKVIAEPDFKPLGANLDQPWAHTNKHGDA
LPLDDSPPPASVQSGRERFSVDAEESYVTWMDFAFYVSITRDNGLRLYDIRYKGKRIMYE
LGLDEAIAHYAGIDPVQSGTCYFDSMNGFGPTMISLVKGYDCPAYSHYVNVTQTTGETTY
TQKDGLCMFEIDKGFPIQRHSWAGHTTVTKNIAFNIRAIYTIGNYDYMTTYQFHLDGSIE
IDVRASGYISSAFYAENEDYGFKIHDSLSGSLHDHVITFKADFDILGEKNSLQKVAIEPT
VEK
NT seq
1632 nt
NT seq
+upstream
nt +downstream
nt
atgcgtttctcaaacttctttgtctcagcctctctggggaatctcgctctcggcgcagcc
ttctctactggaaggctcgagagtcgaaagaaaggccatggaactgattgttctctgaac
cagaccaccacgagtgctcctcacaagaacttctggggtagtctgactacccaggagact
aaggatgtgcttgctcttctgcatagcaatgcaacaggcttcaacttgactgccgcagcg
gatgctgggagccgggataacaagatcatgtcggttgagctcatgatgcccaacaagaca
gacgtcctccctctcctctcagacagcaccggcacaccagagcgttatgccctggcctct
ctcatgtttggagcagctgagagtgcctacgtgcaagagttcaaggttggtcctctgcct
atcaccaacgcctcgtatgtcatgccatacactttcacaaacacacgaggcgatggcaag
atcccagttgtcaaccccgacgctgaagactatgccaacttcaatcttgagatcatgaaa
ggcgcagaggacgtcacgaagcgactctggaatttgaccgtcgaggatggacttcagatg
ccgcttgcttttgcagctcccctcacagttacagaagacaaggtcatcatgtggcagggc
ttcaacgcacccgtcaccagcatctacgacacaatctcgctgcttcctctaggtttgtac
atgaggtcagatatcacaggccgtgatcccagcaagtggaaggtgacaggctgggtgtat
aacaacacgttctacaaagacctcgatgccttccgcaaggtcattgctgagcctgatttc
aagccgctgggagccaatctggaccagccttgggcgcatactaacaagcacggtgatgct
ctccctctggatgacagtcctccacccgcgtctgttcagtctggcagggagagattttct
gttgatgcggaggagagttatgttacttggatggatttcgctttctatgttagtattacg
cgtgataacgggctgcgactttacgacattcgatataagggcaagaggatcatgtatgag
cttggactcgatgaggctatcgcccattatgccggtattgatcccgtacagtctggaacc
tgctacttcgacagcatgaatggtttcggccccaccatgatctctctcgtcaagggctac
gactgccccgcatactcacactacgtcaacgtcacccagaccaccggcgagaccacatat
acccagaaagacggcctctgcatgtttgagatcgacaagggcttccccattcaacgccac
tcctgggccggccacacaaccgtaacaaagaacatagccttcaacatccgcgccatctac
accatcggcaactacgactacatgaccacctatcaattccacctcgacggctccatcgag
atcgacgtccgtgcatcgggctacatctcatctgcattctacgccgagaacgaagactat
ggtttcaagatccacgacagtctttctgggtctctgcatgatcatgttatcaccttcaag
gctgatttcgatatcttgggtgagaagaattcgctgcagaaggttgctattgagcctacg
gttgagaagtaa
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