KEGG   Rhodanobacter glycinis: CS053_15200
Entry
CS053_15200       CDS       T06136                                 
Name
(GenBank) GMC family oxidoreductase
  KO
K19813  glucose dehydrogenase [EC:1.1.5.9]
Organism
rgl  Rhodanobacter glycinis
Pathway
rgl00030  Pentose phosphate pathway
rgl01100  Metabolic pathways
rgl01110  Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:rgl00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00030 Pentose phosphate pathway
    CS053_15200
Enzymes [BR:rgl01000]
 1. Oxidoreductases
  1.1  Acting on the CH-OH group of donors
   1.1.5  With a quinone or similar compound as acceptor
    1.1.5.9  glucose 1-dehydrogenase (FAD, quinone)
     CS053_15200
SSDB
Motif
Pfam: GMC_oxred_C GMC_oxred_N DAO FAD_binding_2 NAD_binding_8 Pyr_redox_2 Lycopene_cycl FAD_binding_3 FAD_oxidored HI0933_like Thi4
Other DBs
NCBI-ProteinID: QEE25699
UniProt: A0A5B9E1X3
LinkDB
Position
complement(3423383..3425371)
AA seq 662 aa
MSNPTYDLVIVGSGIAGAIVAHQLGRQGKKVLILEAGAPVPVDRSGYMNTFFKANAKTPE
SPYPPTTQNPTAATPDNPLGLPDPATENAPRYTVLQIGAWRNPKQCYFDYAPQPLYLKGD
SPEVTFAFASSYERIGGGTTWHWLGTSLRLFPTDFTLKTTYGHGVDWPGGQTFYQALVPY
YEKATDVIGVSGDKTQLDTLYTQFKVSPSGQYGPDYDYPMPAIVDSLVDQAFGVPAVTTL
TVDGNPIYLTPTPQGRNSLPGDRRQCAGNTNCIPICPIQAKYDATVTLGDALQTGNVEIR
YRCVASNIRVDDDTAEVVGIDYISYDEHTGDATGSGTVTASKYLLAAHAIETPKLLLMSN
KNKNFPNGVANSSGQVGRNLMDHVMYLAWGLAKDPVYAFRGPLSTSGIESLRDGAFRKNR
SAYRIEIGNEGWQWAANDPFTTLADFVFGQDANQLNGNAVNPQGQPLRFNPNLPANSQLF
GAQLVDTLNGIYVRQIRLGYLIEQLPDPDNRVELSSTETDHLGLPRPRVTYRIRQDYERD
GFVSAKQVSTEIFNAMGATEYTRTPPAPVLYGAADQVTATNFQYQGNNFTFYGAGHIAGT
YRMGDSKSDSVLNARQQSWDHGNLYMVGSGVFPTIATGNPTLTIAALALQAADNILQDLA
AA
NT seq 1989 nt   +upstreamnt  +downstreamnt
atgagcaatccaacctatgacctggtgattgtcggctccggcatcgccggcgccatcgtg
gcccatcaactgggccggcagggcaagaaggtgttgatcctcgaagctggcgcccccgtg
ccggtggatcgcagcggctacatgaacaccttcttcaaggccaacgcgaagacgcccgaa
tcgccgtacccgccgacgacgcagaacccgaccgcggccacgccggataacccgctgggc
ctgcccgatccggccaccgaaaacgcgccacgctacaccgtgctgcagatcggcgcctgg
cgcaatccgaagcagtgctatttcgactacgctccgcagccgctgtatctcaaaggcgac
agcccggaggttaccttcgctttcgccagttcctacgagcgtatcggtgggggcaccact
tggcattggctgggcaccagcttgcgtctgttccccaccgacttcacattgaaaacgacg
tatgggcatggcgtggattggcccggtgggcaaaccttctaccaggcgctggtgccctac
tacgagaaggcgaccgacgtgatcggcgtctccggtgacaagacgcagctcgacacgctc
tacacccagttcaaggtgtcacccagcggccagtacggtcccgattacgattacccgatg
ccggccatcgtcgactccctggtcgatcaggcttttggcgtgccggcggtcaccacgctc
accgtcgacggcaacccgatttacctcacgcccacgccgcagggacgcaactcgctgccg
ggggaccggcgccagtgcgcaggcaacaccaactgcatcccgatctgcccgatccaggcc
aagtacgacgctaccgtgacgctgggcgatgccttgcagaccggcaacgtggagattcgc
taccgctgcgtggccagcaacatccgcgtcgacgacgacaccgccgaagtcgtcggcatc
gactacatcagctacgacgagcacaccggcgatgccaccggttcgggcacggtgaccgcg
agcaagtatctgttggcggcgcacgccatcgagacacccaagttgctgctgatgtcgaac
aagaacaagaactttccgaacggcgtggccaattccagcgggcaggtcggacgcaacctg
atggaccacgtgatgtacctggcctggggcttggccaaggatccggtttacgcctttcgc
ggcccgctctccacctcgggtatcgagtcgttgcgcgatggtgcgtttcgcaagaatcga
tcggcctatcgcatcgagatcggcaacgagggctggcaatgggcggccaacgatccgttc
accacgctggcggatttcgtgttcggacaggatgccaaccagctcaacggcaacgcggtg
aacccgcaggggcagccgttgcgcttcaacccgaacctgcccgcgaacagccagcttttc
ggcgcgcaactggtcgatacgctcaacggcatctacgtgcgccagatccggctgggctac
ctgattgaacaactgcccgatccggacaaccgggtcgaactgtcgtccaccgagaccgat
catcttggcctgccgcgtccgcgggtcacctatcgcattcgccaggattacgagcgcgac
ggtttcgtttccgccaagcaggtgtccacggaaatcttcaacgccatgggcgccaccgag
tacaccaggacgccgccggcaccggtgctgtacggcgcggccgaccaggtcaccgctacc
aacttccagtaccagggcaacaacttcaccttctacggcgccgggcatattgccggcact
taccgtatgggtgacagcaagtccgactcggtgctgaatgcccgccagcagtcgtgggac
cacggcaacctctacatggtgggcagcggcgtatttcccaccattgccacgggaaatccg
acgctgacgattgccgcactggcgctgcaggcggccgacaacatcctgcaggaccttgcc
gcagcgtag

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