KEGG   Simiduia agarivorans: M5M_07580
Entry
M5M_07580         CDS       T02281                                 
Name
(GenBank) glycolate oxidase subunit GlcD
  KO
K00104  glycolate dehydrogenase FAD-linked subunit [EC:1.1.99.14]
Organism
saga  Simiduia agarivorans
Pathway
saga00630  Glyoxylate and dicarboxylate metabolism
saga01100  Metabolic pathways
saga01110  Biosynthesis of secondary metabolites
saga01120  Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:saga00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00630 Glyoxylate and dicarboxylate metabolism
    M5M_07580
Enzymes [BR:saga01000]
 1. Oxidoreductases
  1.1  Acting on the CH-OH group of donors
   1.1.99  With unknown physiological acceptors
    1.1.99.14  glycolate dehydrogenase
     M5M_07580
SSDB
Motif
Pfam: FAD-oxidase_C FAD_binding_4
Other DBs
NCBI-ProteinID: AFU98707
UniProt: K4KXS1
LinkDB
Position
complement(1694705..1696153)
AA seq 482 aa
MTQELQALIKHLRQQLPANRLLLESEQCAVYACDALAVYSETPALVVLAESEAEVQTVVK
AAARFQVPLVARGAGTGLSAGALPKRDGMLLVTSRMREILELDPTRRIARVQPGVVNARV
SEAARVHGLYYAPDPSSHIACSVGGNVAENAGGVHCLKYGVTVNNVQSLRLVDARGEILC
MGAHRGEQTGMDLLALVHGSEGCLGIVTEITLSLTPMPEKTRTLLAVYDKVRPACDAVSA
IIRAGIIPAAMEMMDHFAIQAAEAFCQPGYGQGANAVLLIDLDGHPLEVAAELEQVRTLL
ALSGAARVQEAADETQRQRWWKGRKSAFPAIGRLSPDYYCIDGTVPRGRIGDVLEGIQAL
SDRYGLRVSNVFHAGDGNLHPLILFDASLPGELEKTERLAADILALCVDVGGTITGEHGV
GREKYDQMALQFSDAEIGQFLRVKAALDPQQLFNPDKHVPTLARCREYRQLRARQAGEPA
HE
NT seq 1449 nt   +upstreamnt  +downstreamnt
atgacccaagagctgcaagcactgataaaacacttgcgccaacagctaccggcaaaccgg
ttattgttggaatccgagcagtgtgcagtctacgcctgtgatgcgctggcggtgtacagc
gagaccccggcgctggtggtgttggctgaatcggaagcggaagtgcagacggtggtaaaa
gccgctgcccgctttcaggtgcccttggttgcgcgcggcgcgggtacggggctgtcggcc
ggcgccctgcccaagcgcgatggcatgcttctggtcaccagtcgcatgcgtgaaattctg
gaactggacccaacacgacgcattgcccgcgtgcagcccggcgtggtcaacgcccgggtc
agtgaggccgcgcgggtgcacggcttgtattacgcgcccgatccttcgtcgcacatcgcc
tgctctgtaggcggcaacgtggctgaaaatgcgggcggagtgcattgcctgaaatacggc
gttaccgtcaacaacgtgcagtcgttgcgactggtggatgcccgcggcgagattctgtgc
atgggtgcgcaccgcggcgagcaaacgggtatggatttattggcgttggtgcacgggtct
gaaggctgcttgggcattgtgacggaaattacgctttcgcttaccccgatgccggaaaag
acccggaccttgttagcggtgtatgacaaggtgcgtccggcctgtgacgcggtatcggca
attatccgagccggcattattcccgccgccatggaaatgatggaccactttgcgattcag
gcggccgaggcgttttgtcagccgggttatggccagggcgctaacgcggtgttgctgatt
gatctggatggccatccattggaagtggcggccgaacttgaacaggtgcgaacgctattg
gccctcagcggcgccgcgcgtgtgcaggaggccgccgatgagacccagcgacaacgttgg
tggaagggccgcaaaagcgctttcccggccattggccgcctgagcccggattactattgc
attgatggcactgtgccgcgtggccgcatcggcgatgtgctggaaggcattcaggcattg
agtgatcgctatggcttgcgcgtgtcgaatgtgtttcatgccggcgacggcaacctgcac
ccgctgatcctgtttgacgcttcgctacccggtgagctggaaaaaaccgaacgactggcc
gccgatattctcgcgctgtgcgtggacgtgggcggtaccattaccggcgagcacggcgtg
ggtcgggagaaatatgatcagatggcactgcagttttccgatgcggaaatcggccagttc
ctgcgggtaaaagccgcgctggacccgcagcaattgtttaacccggacaagcacgtcccc
acactcgcgcgctgccgggagtatcgccagttgcgcgcgcgtcaggccggggagccggcg
catgagtga

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