KEGG   Saccharomycodes ludwigii: SCDLUD_001293
Entry
SCDLUD_001293     CDS       T08289                                 
Name
(RefSeq) hypothetical protein
  KO
K00107  D-arabinono-1,4-lactone oxidase [EC:1.1.3.37]
Organism
slud  Saccharomycodes ludwigii
Pathway
slud00053  Ascorbate and aldarate metabolism
slud01100  Metabolic pathways
Brite
KEGG Orthology (KO) [BR:slud00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00053 Ascorbate and aldarate metabolism
    SCDLUD_001293
Enzymes [BR:slud01000]
 1. Oxidoreductases
  1.1  Acting on the CH-OH group of donors
   1.1.3  With oxygen as acceptor
    1.1.3.37  D-arabinono-1,4-lactone oxidase
     SCDLUD_001293
SSDB
Motif
Pfam: ALO FAD_binding_4 SIS_2
Other DBs
NCBI-GeneID: 70106615
NCBI-ProteinID: XP_045937575
LinkDB
Position
I:2984600..2986246
AA seq 548 aa
MDEKDSIISSSSSTTTGTTSSAIIDPMAGLNGIKNYTFKNWAGIFSCKPQLFFQPSNIDE
VTKIILNAYKEGKTFTVIGSGHSPSDLCCANPNGWLVNLDKLNRVLDFKVYDGGNYADIT
VEAGLRVYKLNEILGAKGYTIQNLGSISEQSVAGITATGTHGSSAFHGLVSSQYVNLTII
NGKGELIYLDSETNQDVFRAALLSLGKIGVIVKATIRAIPKYKIKSTQEVIHFETLLEKW
DDIWTSSEFIRCWWYPYTRKCVLWRGNKTTEQVHEVTRKSWWGTKFGRIFYECLLWISVK
IYPGITPFVESFVFNRQYGAVETFGNGDVAIQDSIDGLNMDCLFSQFVDEWGCPLLNGPE
VLRSLDHSIQQAASNKEFYVHVPIEVRCSNTTLPPHQLDYSHRTSTSKGAVYGNILRPYL
DATPRDLQYAEHVTNNQLTLYINATIYRPFGANTPIHKWFTLFEHTMGAAGGKPHWAKNF
LGDVSMLPKGVKPKEKYLDYEMRGMASEIIKWYGEDLIKWQQIRKQQDPNGVFLANKDWC
IRNGILEI
NT seq 1647 nt   +upstreamnt  +downstreamnt
atggatgaaaaagactctataataagtagtagtagtagtaccaccaccggtactactagt
tcggcaattatagatccaatggccggtttaaacggtattaaaaactatacttttaaaaac
tgggctggcatctttagttgtaaaccacaattattttttcaaccaagtaacatagatgaa
gtcacaaaaattatcttgaatgcttataaagagggcaaaacctttactgtcataggttct
ggtcattctccaagcgatctgtgctgtgcaaatccaaatggttggttggtaaatctagat
aaattaaacagggttctagatttcaaagtgtatgatgggggcaattatgcagatattaca
gtagaagcaggattaagagtttataagttgaatgaaatattgggtgctaaaggatatact
atccaaaatttaggttcaatatctgagcaaagtgttgctggtattactgcaacaggtacg
catggttcttcagctttccacggattagtatcctctcaatatgttaatctaactattatt
aatggcaaaggtgaactaatttatttagattctgaaaccaatcaagatgtttttagagca
gctttattgtctttggggaaaattggcgtcattgtcaaagctacaattcgtgctataccc
aaatataaaattaaatctacacaagaagtcatccattttgaaactttgttggagaaatgg
gatgatatttggaccagtagtgaatttattaggtgctggtggtacccctacactcgtaaa
tgtgttctgtggaggggtaataaaactaccgaacaagttcatgaagttactcgtaaatca
tggtggggtactaaatttggcaggattttttatgaatgtttattatggattagtgttaaa
atttatccagggataaccccatttgtggaaagttttgtgtttaatagacaatatggtgct
gtagaaacttttggtaatggtgatgtagctattcaagattctattgatggtttaaatatg
gattgtttattttctcaatttgttgatgaatgggggtgcccattacttaatggtcctgaa
gttttacgttctttggatcattccattcaacaagcggcttctaacaaggagttttatgta
catgttcctattgaagttcgttgttctaatactactctcccaccccatcaattggattat
tcccacagaacttcgacgtccaagggtgccgtttatggtaatattttacgtccttattta
gatgctactccaagagatttacaatatgctgaacatgtcaccaataaccaattaacttta
tatattaatgctactatttatagaccatttggtgccaatacacctattcataaatggttt
accctttttgaacatacaatgggtgctgctggtggtaaaccacactgggctaaaaatttc
ttgggcgatgtttcaatgcttccaaaaggtgttaaaccaaaagagaaatatttggactat
gaaatgagaggtatggccagtgaaattatcaagtggtatggtgaagatttaatcaaatgg
caacaaattagaaaacaacaagatccaaatggtgtgtttttagccaataaagattggtgt
attcgtaatggtattttggaaatttga

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