Malania oleifera: 131148469
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Entry
131148469 CDS
T09312
Name
(RefSeq) L-ascorbate oxidase homolog
KO
K00423
L-ascorbate oxidase [EC:
1.10.3.3
]
Organism
mof
Malania oleifera
Pathway
mof00053
Ascorbate and aldarate metabolism
mof01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
mof00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00053 Ascorbate and aldarate metabolism
131148469
Enzymes [BR:
mof01000
]
1. Oxidoreductases
1.10 Acting on diphenols and related substances as donors
1.10.3 With oxygen as acceptor
1.10.3.3 L-ascorbate oxidase
131148469
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Motif
Pfam:
Cu-oxidase
Cu-oxidase_3
Cu-oxidase_2
Motif
Other DBs
NCBI-GeneID:
131148469
NCBI-ProteinID:
XP_057954146
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Position
2:151429773..151431692
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AA seq
554 aa
AA seq
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MGARLVVALLLCLSAGGALVVRGEDPYLFFTWNITYGTIAPLGVPQQAILINGQFPGPNI
NSTGNNNVVVNVFNNLDEPFLLTWNGVQQRKNSWQEGLPGTNCPIPPGKNQTYHFQVKDQ
VGSYYYFPSTALHKVVGGFGGLRVNSRLLIPVPFAAPEDDYTVLIGDWYTKSHSALRKLL
DSGRSIARPDGVLINGKSGKLPQEKMEPMFTMKPGKTYRYRVCNVGLKTSLNFRIQGHTM
KLVEMEGSHTIQNSYDSIDVHVGQCFSVLVTADKDPKDYYMVASSRFTKQVHTATAILRY
TNGKGPASPELPPAPVGWAWSLNQFRSFHWNLSASAARPNPQGSYHYGAINISRTIKLVN
SASTVGGKLRYAINGVSHTDKETPLKLAEYYGVADKVFKYNLIGDEPPAKGADKITVAPN
VLNVTFRTFVEIIFENHEKNVQTWHLDGYSFFPVAIQSGRWTPDCRKNYNLLDAVSRNTV
QVYPKSWAAIFLTFDNAGMWNLRSTQWERNYLGQQLYISVQSPARSLRDEYNAPDNVQLC
GIVKNLPKPPPYTP
NT seq
1665 nt
NT seq
+upstream
nt +downstream
nt
atgggtgcacgtctcgtcgtagcactgctgctgtgcctctcggccggtggggcattggta
gtgcgaggagaggacccttacctcttcttcacctggaacatcacatacggcaccatcgct
ccattgggtgttccgcaacaggccattctcatcaatggtcaattccccggtcccaacatc
aactccaccggcaacaacaacgttgtggttaatgtgttcaataacctggacgagcctttc
ctcctcacatggaacggcgtccaacaaaggaaaaactcctggcaagagggtctgcccgga
accaactgccccatccccccagggaagaaccagacataccacttccaagtgaaggaccag
gtcgggagctactattacttccctagcaccgccctccacaaagtggtcggtggcttcggc
ggtctccgggtcaatagccgtctgctcatccccgtcccattcgcagccccggaggacgat
tacaccgtcctcattggcgactggtacaccaagagccactccgccctcaggaagctgttg
gacagcggtcgctccattgcgaggcccgacggcgtcctcatcaatggcaaatccgggaag
ctgccccaggagaagatggagcctatgttcaccatgaagcccgggaagacgtacaggtac
agggtttgcaacgtggggctcaagacctccctcaacttcaggatccaaggccacaccatg
aagctggtggagatggaaggctcccacaccatccagaactcctacgactccatcgacgtc
cacgtcggtcagtgcttctccgtcctggtcaccgctgacaaggaccccaaggactactac
atggtggcttcctccagattcaccaagcaggtccacaccgccaccgccatcctccgctac
accaacggcaaaggccccgcctctcctgagctccccccagcgccagttggatgggcctgg
tccctcaaccagttccgctccttccactggaatctctccgccagtgctgcccgacctaac
ccccagggatcctaccactacggtgccatcaacatttcccgcaccatcaagctcgtcaat
tccgctagcaccgtcggtggaaagctccgctatgccatcaatggcgtctcccataccgac
aaagagacacccctgaagctggccgagtactacggagttgcggacaaggtgttcaagtac
aacctcatcggggatgaaccgccggcaaagggtgcggataagatcaccgtggcgcccaat
gtcctcaacgtcactttccgcacatttgtggagatcatttttgagaaccatgagaagaac
gttcagacgtggcatttggacggctactctttcttccctgttgccatccaatcagggagg
tggaccccagattgtagaaagaactacaaccttcttgatgcagtgagcaggaatacagtt
caagtgtacccaaaatcttgggcagccatcttcttgacattcgacaacgctggaatgtgg
aacctgaggtcgacacaatgggaaaggaattacttggggcagcagctctacatcagcgtt
caatcccctgcacgctccctcagggatgaatacaatgcccccgacaacgtccagctctgc
ggaatcgtcaagaacttgcccaagcctccaccgtacaccccctaa
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