Burkholderia sp. PAMC 28687: AX768_01460
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Entry
AX768_01460 CDS
T05699
Name
(GenBank) glycolate oxidase subunit GlcD
KO
K00104
glycolate dehydrogenase FAD-linked subunit [EC:
1.1.99.14
]
Organism
bui
Burkholderia sp. PAMC 28687
Pathway
bui00630
Glyoxylate and dicarboxylate metabolism
bui01100
Metabolic pathways
bui01110
Biosynthesis of secondary metabolites
bui01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
bui00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00630 Glyoxylate and dicarboxylate metabolism
AX768_01460
Enzymes [BR:
bui01000
]
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
AX768_01460
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Motif
Pfam:
FAD-oxidase_C
FAD_binding_4
Motif
Other DBs
NCBI-ProteinID:
AMM12980
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Position
1:complement(304341..305834)
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AA seq
497 aa
AA seq
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MNAPAELSPEILAQRQREVVQALMAVLPTHCLLYREEDTAAYECDGLAAYRRLPLAVALP
ETEAQVQRVVQICARLDVPIVPRGAGTGLSGGAMPIRHGIVVSLARFRKIMEVDPYARTA
TVQPGVRNLAISEAAAQYGLYYAPDPSSQIACTIGGNVSENSGGVHCLKYGLTCHNVMRV
RAVSMEGDILEFGSLGLDAPGLDLLAVLIGSEGMFAIVTEITVKLIPKPQTAQVIMASFD
DVVKGGNAVAAIIAAGIIPAGLEMMDKPATRAVEEFVKAGYDLEAKAILLCESDGTQDEV
SEEIVRMTAVLREFGANRIQISRSEAERLKFWSGRKNAFPAAGRISPDYYCMDGTVPRRQ
IGPLLARIEEMEVKYALRCMNVFHAGDGNMHPLILFNGNDLDEWHRAEAFGSDILEACVE
LGGTVTGEHGVGIEKINSMCVQFSPEERDTFHAIKRAFDPPGLLNPDKGIPTRARCAEYG
KMHIRGGLLPHPEIPRF
NT seq
1494 nt
NT seq
+upstream
nt +downstream
nt
atgaacgcacccgccgagctttcgccggaaattctcgcgcaacgccagcgcgaagtggtc
caggcattgatggccgtgctgccgacgcattgcctgttgtatcgcgaggaagacacggcc
gcgtacgaatgcgacggactggccgcgtatagacgtttgccgcttgccgttgcattgccg
gaaaccgaggcgcaggttcagcgcgtcgtgcagatttgcgcgcggctcgacgtgcccatc
gtcccgcggggcgccggtacgggcttgtcgggcggcgccatgccgatacggcatggcatc
gtggtgtctcttgcgcggtttcgcaagatcatggaagtcgatccgtatgcgcgcaccgcg
accgtccagccgggcgtgcgcaatctcgccatttccgaagccgccgcgcagtacgggctt
tattacgcgcccgatccttcatcgcagattgcgtgcacgatcggcggcaacgtcagtgaa
aattccggcggcgttcattgcctcaaatacggcctgacgtgtcacaacgtgatgcgggtg
cgggctgtatcgatggaaggcgacattctcgaattcggttcactcgggctggacgcaccc
gggctcgatctgcttgcggtgttgattggcagcgaaggcatgttcgcgatcgtcaccgaa
atcaccgtcaagctgatcccgaagccgcaaacggcgcaagtcatcatggcgagtttcgac
gacgtggtgaaaggcggcaacgcggtcgcggcgatcatcgcggcggggatcatcccggcc
ggcctcgaaatgatggacaaacccgcgacgcgcgcggtcgaagaattcgtgaaggccggc
tacgaccttgaagccaaggcgatcctgctgtgcgaatccgatggcacgcaagacgaagtg
tccgaagaaatcgttcgcatgacggccgtgttgcgcgagttcggcgcaaaccgcatccag
atttcgcgttccgaagccgaacggctgaaattctggtccgggcgcaagaacgcgtttccg
gcagccgggcggatctcgccggattattactgcatggacggcaccgtgccgcgccgccag
atcgggcctttgcttgcgcgtatcgaagagatggaagtcaagtacgcgctgcgttgcatg
aacgtgttccatgcgggcgacggcaacatgcatccgctcattctcttcaatggcaacgat
ctcgacgaatggcatcgcgctgaagcgttcggctcggacatcctggaagcctgcgtggaa
ctcggcgggacggtgacgggcgagcatggcgtggggatcgaaaagatcaattccatgtgc
gtgcagttttcgccggaggaacgtgacactttccacgcaatcaagcgcgccttcgatcct
cccggcctgctcaatccggacaaaggcattcccacgcgcgcgcgctgcgccgagtacgga
aagatgcacatccgcggcggtttgctcccgcatccggaaattccgcgcttttag
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