Alligator mississippiensis (American alligator): 102559022
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Entry
102559022 CDS
T03087
Name
(RefSeq) L-gulonolactone oxidase
KO
K00103
L-gulonolactone oxidase [EC:
1.1.3.8
]
Organism
amj
Alligator mississippiensis (American alligator)
Pathway
amj00053
Ascorbate and aldarate metabolism
amj01100
Metabolic pathways
amj01240
Biosynthesis of cofactors
Module
amj_M00129
Ascorbate biosynthesis, animals, glucose-1P => ascorbate
Brite
KEGG Orthology (KO) [BR:
amj00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00053 Ascorbate and aldarate metabolism
102559022
Enzymes [BR:
amj01000
]
1. Oxidoreductases
1.1 Acting on the CH-OH group of donors
1.1.3 With oxygen as acceptor
1.1.3.8 L-gulonolactone oxidase
102559022
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Motif
Pfam:
ALO
FAD_binding_4
B12-binding
NaeI
Motif
Other DBs
NCBI-GeneID:
102559022
NCBI-ProteinID:
XP_014453746
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All DBs
Position
Un
AA seq
539 aa
AA seq
DB search
MTCAAVRGCWQLEHPVHPWPEPCFPCVLLEEAFLKQVLPPGPASESLGSVLPVLQDSSAP
ACLCPRAPRLLQDPLSTLRPGSRKEPPLLQRPGPKGSSRMVHGHGGVQFQNWAKTYGSSP
ELYFQPTSVEEIKEILELARQRNKRVKVVGGGHSPSDIACTDGFMIQMGKMNKILKVDKE
KRQATVEAGILLSDLNVELTKYGLALANLGAVSEVAAAGVIGTGTHNTGIKHGILPTQVV
ALTLLTAAGEILECSEGSHADIFQAARVHLGCLGVVLTITFQCVPEFYLQETTFPSTLKE
VLDNLDSHLQRSEYFRFLWFPHSENVSVIYQDHTSKPPSSTGSWFWDYAIGYYLLEFLLW
VSTFLPFLVPWINRGFFWLLFTSKGEKVDLSYKVFNYECRFKQHVQDWAIPIEKTKDALL
ELKAALESSPKVVAHYPVEVRFARADSILLSPCFQRDSCYMNIIMYRPYGKDVPRLDYWL
AYEGIMKKFGGRPHWAKAHACTRKDLEKIYPGFPKFCSIREKLDPTGMFLNTYLEKVLY
NT seq
1620 nt
NT seq
+upstream
nt +downstream
nt
atgacctgtgcagcagtccgaggctgctggcagctggagcaccctgtccacccctggcca
gagccatgttttccctgtgtgctcctggaggaagcattcctcaagcaggttctgccgccc
ggcccggccagcgagagcctgggctcagtgctcccggtcctgcaggacagctctgccccc
gcttgcctctgccccagagcccccagactgctccaggaccccctcagcaccctccgcccg
gggagcaggaaggagccccccttgctgcagagacccggtcctaagggaagcagcaggatg
gttcacggccatggaggcgtccagttccagaactgggccaagacctatggctcctccccg
gagctgtatttccagccgacgtcggtggaggaaatcaaggagattttggagctggcccgg
cagcggaacaagcgggtgaaggtggtgggaggtggacactcgccctctgacatcgcgtgc
acggacggcttcatgatccaaatggggaagatgaacaagatcctcaaggtggataaagag
aagaggcaagcgacagtggaagcagggatcctcctctctgatctgaacgtcgagctgacc
aagtatggcctggcgctggccaacctaggagctgtctccgaagtggcggccgctggggtg
atcggcaccgggacacacaacacgggcatcaaacacgggatcctgcctacccaggtggtg
gcgctgaccctgctgacggcggcgggggagatcctggagtgctccgagggctcccacgcg
gacatcttccaagcagcccgggtgcacctcgggtgcttgggcgtcgtgcttaccatcacc
ttccagtgcgtgccggagttttacctgcaggagaccaccttcccctccaccctcaaggag
gtcctggacaacctcgacagccacctgcagcgctccgagtacttccgcttcctctggttt
ccgcacagcgagaatgtcagcgtcatctaccaggatcacaccagcaagcctccctcctcc
acaggcagctggttctgggactacgccatcggctactacttgctggagttcctgctctgg
gtcagcacgttcctgcccttcctggtgccctggatcaaccgcggcttcttctggctcctc
ttcaccagcaagggggagaaggtcgacctcagctacaaggtcttcaactacgagtgccgt
ttcaagcagcatgtccaggactgggccatccccattgagaagacaaaggatgccctcctg
gagctgaaggccgcactggagagcagccccaaggtggtggctcactaccccgtggaggtg
cgcttcgcccgggcagacagcatcctgctcagcccctgcttccagcgcgacagctgctac
atgaacatcatcatgtacaggccctatgggaaggacgtaccccgactggactactggttg
gcctacgagggcatcatgaagaagtttggagggaggccacactgggccaaggctcacgcc
tgcacccggaaggaccttgagaagatatatcccggcttcccgaagttctgctccatccgg
gagaagctggatcctacagggatgttcctgaacacctacctggagaaggtgctgtactga
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