Mucilaginibacter celer: HYN43_010485
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Entry
HYN43_010485 CDS
T05668
Name
(GenBank) hypothetical protein
KO
K00276
primary-amine oxidase [EC:
1.4.3.21
]
Organism
muh
Mucilaginibacter celer
Pathway
muh00260
Glycine, serine and threonine metabolism
muh00350
Tyrosine metabolism
muh00360
Phenylalanine metabolism
muh00410
beta-Alanine metabolism
muh01100
Metabolic pathways
muh01110
Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:
muh00001
]
09100 Metabolism
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
HYN43_010485
00350 Tyrosine metabolism
HYN43_010485
00360 Phenylalanine metabolism
HYN43_010485
09106 Metabolism of other amino acids
00410 beta-Alanine metabolism
HYN43_010485
Enzymes [BR:
muh01000
]
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
HYN43_010485
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Motif
Pfam:
Cu_amine_oxid
Cu_amine_oxidN2
AGAO-like_N2
Motif
Other DBs
NCBI-ProteinID:
AYL95689
UniProt:
A0A494VNE4
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Position
complement(2659983..2662004)
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AA seq
673 aa
AA seq
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MIKTPLLYALGVGLLCSAPAFAQTGGNTYPLDPLSAAEMKKVVQILKDSKTTTGKDIFNI
INLKEPPKSEVLAYKPGAHTRREAFTSFYDYNKNGVTEAVVDLNAEKVISVKNIPNVIGM
GLEADSVANTIVRKDKAWIAALKKRGISIDSVTHRSIFVGDIGIAPIGHREQMVIARRKK
NNVDIEGLMAYTDFTTGKILKIVDEANAFSDKTDLYYFNKDSVKETLPAPKPLMITQPDG
HTFAVNGHEITWQNWKLRYGVDNREGLVIYDVRFNDNGKERSIMYRGSMPEMVVPYGSPD
LFQATYNFFDAGEYRLGQGTAQSLTPGADAPENAEYMPAILHRENGTPFQVDRAVAVYEE
YGGVLWRHGTVSRRATNLVIKYYTMIENYDYAFTWRFKEDGTIDVDIELTGIVEVKGVHR
TTEMSMGINKNDYSYQGHSFGTLVHKHVEAINHQHFFVFRLDMDIDGAQNNSVMEMNSKA
VPPGKDNPYQNAFYVDDTMFMNEKEAQRDVNYQSARNWHIVNNKEMNEFGGHVGYMLMPG
GQAKTFVPQTSLLRKKAGFLNHQFWVTQYHENEIYPAGKYPASNKVYDGLPEWTAKNREI
GDNDVVLWYVAGITHIVRPEEWPIMSVHHMGFTLMPFGFFSGNPTYGNSNPEFIKQQFKP
VEKKQVGSDIDHQ
NT seq
2022 nt
NT seq
+upstream
nt +downstream
nt
atgattaaaaccccgttactttatgcccttggcgtagggttgctttgcagcgcgcctgca
tttgcccaaaccggcggcaacacttacccgctcgatccgctttcggcggccgaaatgaaa
aaggttgtgcagatactgaaagacagtaaaaccacaaccggcaaggatatttttaatatc
attaacctgaaagagccgcctaaaagcgaagtgcttgcctataaacccggcgcacacacc
cggcgcgaggcttttaccagcttttatgattacaacaaaaacggcgttaccgaagccgtg
gttgatctgaatgccgaaaaggtgatctcggttaaaaacattcccaatgtaatagggatg
ggcctcgaggccgattcggtggctaacaccattgtacggaaggataaagcctggatagca
gctttgaaaaagcgcggtatctcaatcgattcggtaacgcaccgcagcatttttgtgggc
gatatcggcattgcgccaattggtcatagggagcagatggtgatagcaaggcgtaaaaag
aacaatgtggatattgagggcttgatggcttataccgatttcactactggtaaaatcctg
aagatagtggatgaagccaatgctttcagcgataaaaccgatctgtattacttcaataaa
gattcggttaaggaaacgctgcctgcgccaaagccgctcatgatcacacagcccgatggg
catacctttgccgttaacggccatgaaattacctggcaaaactggaaactgcgctatggg
gtagataatcgtgaaggtttagtgatttacgatgtgcgttttaacgataatggtaaagaa
cgttccatcatgtaccgcggttcgatgccggagatggtggtaccttatggctcgcccgat
ttgttccaggcaacctacaacttttttgatgcaggcgaataccgtttgggtcaaggcaca
gcacaatccctaacccccggtgccgatgcgcccgagaacgccgagtatatgccggccatc
cttcatcgcgaaaacggcacacctttccaggtggatagagcggtggctgtttatgaagaa
tacggcggcgtgttatggcgtcatggcacggtatcgcgcagggccaccaatctggtaatt
aaatactataccatgatcgagaactacgattatgccttcacctggcggtttaaggaggat
ggcactatcgacgtagacattgagcttaccggtattgtagaagtgaagggtgtacaccgc
accaccgaaatgagcatgggtatcaacaagaatgattattcgtaccagggtcattcgttc
ggcacattggtgcataagcatgtggaagctattaatcatcagcacttttttgttttcagg
ctggatatggatatcgacggcgcgcaaaataacagtgtaatggaaatgaacagcaaagcc
gtgccgccgggtaaggataatccttatcaaaacgcgttttatgtggatgataccatgttt
atgaacgagaaggaagcccagcgcgatgttaactaccaaagcgcccgcaactggcacata
gtgaataacaaggagatgaatgaatttggcggccacgtaggttatatgctgatgccgggt
ggacaggccaaaactttcgtaccgcaaacctcgctgctgcgtaaaaaggcaggcttttta
aatcaccagttttgggtaactcagtatcatgaaaacgaaatttatccggcaggtaaatac
cccgccagtaacaaagtttacgatggcctgcccgagtggacggccaaaaaccgggagata
ggcgataacgatgtggtgctatggtacgtggccggcatcacgcatattgttcgcccggaa
gaatggccgatcatgtcggtacatcatatgggttttacgctgatgccttttggtttcttt
tccggcaatccaacctacggcaatagcaaccccgagtttatcaaacaacaatttaaaccc
gtggaaaagaagcaggtgggttcggacatcgaccatcaataa
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