Sulfuricaulis limicola: SCL_0838
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Entry
SCL_0838 CDS
T05241
Name
(GenBank) FAD-binding protein
KO
K00104
glycolate dehydrogenase FAD-linked subunit [EC:
1.1.99.14
]
Organism
slim
Sulfuricaulis limicola
Pathway
slim00630
Glyoxylate and dicarboxylate metabolism
slim01100
Metabolic pathways
slim01110
Biosynthesis of secondary metabolites
slim01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
slim00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00630 Glyoxylate and dicarboxylate metabolism
SCL_0838
Enzymes [BR:
slim01000
]
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
SCL_0838
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Motif
Pfam:
FAD-oxidase_C
FAD_binding_4
Motif
Other DBs
NCBI-ProteinID:
BAV33158
UniProt:
A0A1B4XED9
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Position
complement(830067..831554)
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AA seq
495 aa
AA seq
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MSTAPTSLASTALRQSLAARLREFMPRSSVLTEEEDLRPYECDGLSAYRRLPWIVALPET
VEQVGRLLRLCSEQDIPVVARGAGTGLSGGALPLEDGVLLSLAKFNRILEVDPANRTATV
QPGVRNLAISEAAAPYGLYYAPDPSSQLACSIGGNVAENAGGVHCLKYGLTVHNVTGIKF
MTMDGELITLGGKALDIPGYDLLALMTGSEGMLGVMVEFTVKLLPKPERAQVMLAVFDEI
ETAGDAVAAIIASGFLPAGLEMMDNLAIRAAEAYAKAGYPVEAAAILLCELDGTSEEVSE
GIAQIRTLLLKQGAAEVRVSRDEAERLRMWAGRKAAFPAVGRLSPDYYCMDGTIPRRHLA
KVLRRISDLSKEYGLAVANVFHAGDGNLHPLILYNANKPGELEKTEELGGKILEFCIEVG
GTVTGEHGVGVEKIGQMCLQFTRVELEQFHALKAAFDPRGLLNPGKAVPTLSRCAEFGRM
HVHGGKLVHPELERF
NT seq
1488 nt
NT seq
+upstream
nt +downstream
nt
atgagcacggccccaacctccctggcttcgacggcgctgcgccaatcgctggcggcgcgg
ctgcgcgaattcatgccgcgcagctcggtactgaccgaggaagaagacctgcgcccgtat
gaatgcgacgggctgtcggcctaccgccggctgccctggatcgtggcgctgccggagacg
gtggaacaggtgggtcggctgctgcggctgtgctcggagcaggatattcccgtggtcgcg
cgcggcgccggcaccggcttgtccggcggcgcgctgccgctcgaagacggcgtattgctg
tcgctggcgaaattcaaccgcatcctggaagtcgatcccgccaaccgcaccgccacggtc
cagcccggcgtgcgcaatctcgcgatctccgaggccgcggcaccctatggcctgtactac
gcgcccgatccctcgtcgcagctggcctgctccatcggcggcaacgtcgccgaaaacgcc
ggcggcgtgcattgcctgaaatacggcctgacggtgcacaacgtgaccggcatcaagttc
atgaccatggacggcgaactcatcacgctcggcggcaaggcgctcgacatccctggttac
gacctgctggcgctcatgaccggctcggaaggcatgctcggagtgatggtcgagttcacg
gtcaaactgctgccgaaaccggaacgcgcgcaggtgatgctcgcggtgttcgacgagatc
gaaacggccggcgacgccgttgccgccatcatcgcgagcgggttcctgcccgccggcctc
gagatgatggacaacctcgccatccgcgccgccgaggcttacgccaaggccggctatccg
gtcgaagccgcggcgatcctgctgtgcgaactcgacggcaccagcgaggaagtttccgaa
ggcatcgcgcagattcgcacgctgctgctgaagcagggcgccgccgaggtgcgcgtatcc
cgggatgaagcggagcgcctgcgcatgtgggccggccgcaaggcggcgttccccgcggtc
gggcgcctgtcgccggattactactgcatggacggcaccatcccgcgccgacacctggcc
aaagtattgaggcgcatcagcgatctgtcgaaggaatacggcctggcagtggcgaacgtg
tttcacgccggcgacggcaacctgcacccgctgattctctacaacgccaacaagccgggc
gagctggaaaagaccgaggaactgggcggcaagattctggaattctgcatcgaggtcggc
ggcacggtgaccggcgagcatggcgtgggcgtggagaagatcggccagatgtgcctccag
ttcacgcgcgtggagctggaacagtttcatgccctgaaagcggccttcgatcccaggggc
ctgctcaaccccggcaaggcggtgccgacgctgtcgcgctgcgccgaattcggccgcatg
cacgtgcacggcggcaagctggtgcatcccgaactggaaagattttga
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