Salvia splendens (scarlet sage): 121763006
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Entry
121763006 CDS
T07627
Name
(RefSeq) L-ascorbate oxidase homolog
KO
K00423
L-ascorbate oxidase [EC:
1.10.3.3
]
Organism
sspl
Salvia splendens (scarlet sage)
Pathway
sspl00053
Ascorbate and aldarate metabolism
sspl01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
sspl00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00053 Ascorbate and aldarate metabolism
121763006
Enzymes [BR:
sspl01000
]
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
121763006
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Motif
Pfam:
Cu-oxidase
Cu-oxidase_3
Cu-oxidase_2
Sec23_BS
Motif
Other DBs
NCBI-GeneID:
121763006
NCBI-ProteinID:
XP_042014983
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Position
13:complement(20008173..20010375)
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AA seq
558 aa
AA seq
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MVSFRRTVLPLVLGVPLLCLLSIVNAEDPYLFFEWHVTYGTISPLGVPQQGILINGQFPG
PEINCTSNNNIVVNVFNEIDEPLLLTWAGIQLRKNSWQDGTPATMCPILPGHNYTYQFQV
KDQIGSYIYFPTTALHRASGGIGMLKVHSRPLIPVPFDNPAEDHGILLGDWYNKGHKTLK
SILDSGRSIGKPDGIQINGKSNKVGDAAAEPLITIEAGKTYRLRVCNVGMRLSVNFRIQG
HAMKLVEMEGSHTVQNEYDSMDIHVGQCMSLLVTADQTPKDYYFVASSRFFKQVLTSVAT
IRYANGNGPASPQIPLPPPENSVGIAWSINQFRSFRWNLTASAARPNPQGSYHYGKINIT
RTIKLSNSRQVVDGKLRFAVNGVSHVDGETPLKLAEYYGKANQVFKYDLVKDEAEKGEKV
VVAPSVKNATFRNFVEIIFENHEKTIQTWHLDGYSFFAVAIEPGTWTPKKRQNYNLLDAV
SRHTIQVYPNSWAAIMTTLDNAGMWNLRSDMKERAYLGQQFYFSVVSPALSLRDEYNLPA
KQELCGIVKDLPRLALYT
NT seq
1677 nt
NT seq
+upstream
nt +downstream
nt
atggtttcctttaggaggacagtcctaccccttgttttgggtgtgcctctcctatgcctc
ttgtcaattgtcaatgcagaggatccatatctcttcttcgagtggcatgtcacctacggc
accatctctccgttgggggtccctcagcagggcattctcatcaacggccaattccccggc
cctgagatcaactgcacctccaacaacaacatcgttgtcaatgtcttcaacgaaatcgat
gagcctctcctcctcacttgggccggcatccagctcaggaagaactcatggcaggacggt
actcccgccaccatgtgccccattctccctggccacaactacacctatcagttccaagtc
aaggaccagataggcagttatatttacttccccactaccgccctccaccgtgcctctggg
ggtatcggcatgcttaaagtccacagccgtcctctcatccctgtcccctttgataatccc
gctgaagatcatggtatcctcctcggagattggtacaacaagggccacaagaccctcaag
agcattcttgattccggccgatctattggcaaacccgatggcattcagatcaatggaaag
tctaacaaggttggcgatgctgctgctgagccactcatcaccatagaggccggaaagact
tacaggttgagggtgtgcaacgtgggaatgaggctgagtgtcaacttcagaatccagggt
catgccatgaaattggtggagatggagggatcccacaccgtgcagaatgagtacgactcc
atggatatccacgtcggccaatgcatgtctctcttggtcaccgcagatcaaacccctaag
gactactactttgttgcttccagccgcttcttcaagcaagtcctcacatctgtggccact
atccgctacgccaatggcaacggacccgcatccccccaaattccactaccccctcctgag
aattccgtcggcattgcatggtccatcaaccaattccgctccttcaggtggaacttgacc
gccagtgctgcccgccccaacccacaaggctcctatcactacgggaagatcaacatcacc
cgcaccatcaagctatcaaactctcggcaagtggtggatggcaagctccgtttcgctgtc
aatggtgtctcgcatgtggatggtgaaaccccattaaaactggcggagtactacgggaag
gctaaccaagtgttcaaatacgatcttgtgaaggatgaggcagaaaaaggggagaaagtt
gtggtggcacccagcgtgaagaatgcaaccttcaggaacttcgtggagatcatcttcgag
aaccatgagaagactatccaaacatggcacttggatggatactccttctttgcggttgca
attgaacctgggacgtggacccccaagaagaggcagaactacaatctgttggatgcagtg
agcaggcatacgattcaggtgtaccctaactcatgggctgcaatcatgaccactcttgac
aatgctggtatgtggaacctgaggtctgatatgaaggagagggcatatttgggacaacag
ttctactttagcgttgtctcgccggcactctccttgagggatgagtacaacctccctgcc
aaacaggaactctgcggcattgtcaaggatctgccaaggctcgctctatacacttaa
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