Cicer arietinum (chickpea): 101495562
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Entry
101495562 CDS
T02819
Name
(RefSeq) L-ascorbate oxidase homolog
KO
K00423
L-ascorbate oxidase [EC:
1.10.3.3
]
Organism
cam
Cicer arietinum (chickpea)
Pathway
cam00053
Ascorbate and aldarate metabolism
cam01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
cam00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00053 Ascorbate and aldarate metabolism
101495562
Enzymes [BR:
cam01000
]
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
101495562
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Motif
Pfam:
Cu-oxidase
Cu-oxidase_3
Cu-oxidase_2
Motif
Other DBs
NCBI-GeneID:
101495562
NCBI-ProteinID:
XP_004502172
UniProt:
A0A1S2YB07
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Position
Ca5:41648973..41650926
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AA seq
545 aa
AA seq
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MDRGVILALTLCLFGVSVYGEDPYIYYTWNVTYGTISPLGAPQQGILINGQFPGPEINST
SNNNVVINVFNHLDEPLLFTWHGVQQRKNSWQEGTPGTACPILPGTNYTYHFQVKDQIGS
YFYYPTTGLQRAAGGFGGLRIFSRLLIPVPYPDPEDEYWVIIGDWYNKGHKTLKMMLDSG
RSIGRPDGVIMNGKATNEEPLYTMKPGKTYKYRICNVGLKDALNFRFQGHAMKLVETEGS
HVVQSFYDSLDVHVGQCYTVLVTADKDPKDYYMVASTRFTKYTHTATGIIRYTNGAGPAS
NVLPPAPVGWAWSLNQFRSFRWNLTASAARPNPQGSYHYGQINITRTIKLVNSVAKVDGK
LRYAINGVSHVDGETPLKLAEYYGVADKVFKYNIIGDEPPADLTAITIAPNVINATFRTF
IEVILENSGKSIQSYNLDGYSFFAVACEPGKWSPEKRKNYNLLDAISRHTIQVFPKSWAA
IMLTFDNAGMWNLRSEQAENRYLGQQLYISVLSPELSLRDEYNLPETQIVCGIVKSLPKP
APKYS
NT seq
1638 nt
NT seq
+upstream
nt +downstream
nt
atggatcgaggagtaattttagctttaactctatgcctctttggcgtaagcgtctacggt
gaagatccttacatttactacacatggaatgttacctacggtaccatttcacctcttggg
gcaccccaacagggtatccttatcaacggtcaattcccaggacctgaaatcaacagcacc
agtaacaacaacgttgtgatcaatgttttcaaccaccttgacgaaccattgcttttcaca
tggcacggtgttcaacaaaggaagaattcatggcaagaaggtacccctggtactgcatgc
ccaatccttccaggtacaaattacacttatcacttccaagtgaaggatcaaattggaagt
tacttttactaccccacaacaggtcttcaaagagccgctggtggtttcggtggtcttaga
atcttcagtcgtttattgatccctgttccataccctgatcccgaggatgaatactgggtt
atcatcggtgattggtataacaagggtcacaaaactcttaaaatgatgttggacagtggt
cgttcaattggaagacctgacggcgttatcatgaacggtaaagcaactaacgaagagcca
ctttacacaatgaagccaggtaaaacttacaaatacagaatctgtaacgttggtcttaag
gacgcacttaacttcagattccaaggacatgctatgaagttggttgaaactgaaggctca
cacgttgttcaaagcttctacgattcactcgacgttcacgttggacagtgttacactgtt
ctcgttacagctgataaagaccctaaggattattacatggttgcttccactcgtttcacc
aagtacactcacaccgctaccggtattattcgttacactaacggtgcgggccccgcttca
aacgttcttccacctgcacctgtgggttgggcttggtctcttaaccaattccgttctttc
cgttggaatttaaccgccagtgctgcaaggcctaacccacagggatcttaccattacggt
cagatcaacatcactaggaccattaagttggttaactccgtagccaaagttgacggtaaa
ctccgttacgctattaacggtgtttcccacgtggatggtgaaactcctttgaagcttgct
gaatactacggtgttgccgataaggtattcaagtacaacataatcggagatgaacccccc
gccgatctcactgccatcactatcgcacctaatgtcatcaacgcaactttccgtaccttc
atcgaagtcatcctcgagaattccggaaagtctatccaatcttacaatttggatggttac
tctttcttcgccgtcgcttgtgagccaggaaagtggagcccagagaagaggaagaactac
aaccttcttgatgcaataagcagacacacaatccaagtgttcccaaaatcatgggctgca
ataatgttgacattcgacaatgctggtatgtggaacttgagatcagagcaagctgagaat
cgttacttgggacaacaactatacattagtgttctgtcaccagaactttctttgagggat
gagtacaatcttccagagacacagattgtttgcggtatcgtcaagagtttacccaagcct
gcaccaaaatactcttag
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