Pseudobutyrivibrio xylanivorans: FXF36_07530
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Entry
FXF36_07530 CDS
T06217
Symbol
glpK
Name
(GenBank) glycerol kinase GlpK
KO
K00864
glycerol kinase [EC:
2.7.1.30
]
Organism
pxv
Pseudobutyrivibrio xylanivorans
Pathway
pxv00561
Glycerolipid metabolism
pxv01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
pxv00001
]
09100 Metabolism
09103 Lipid metabolism
00561 Glycerolipid metabolism
FXF36_07530 (glpK)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
pxv04147
]
FXF36_07530 (glpK)
Enzymes [BR:
pxv01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.1 Phosphotransferases with an alcohol group as acceptor
2.7.1.30 glycerol kinase
FXF36_07530 (glpK)
Exosome [BR:
pxv04147
]
Exosomal proteins
Exosomal proteins of other body fluids (saliva and urine)
FXF36_07530 (glpK)
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
FGGY_N
FGGY_C
BcrAD_BadFG
Motif
Other DBs
NCBI-ProteinID:
QFJ54705
UniProt:
A0A5P6VPU5
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All DBs
Position
1:complement(1659361..1660860)
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AA seq
499 aa
AA seq
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MAKYVMALDAGTTSNRCILFNEKGEMCSVAQKEFTQYFPQPGWVEHDANEIWQTQLSVAR
EAMRKVGATSDDIAAIGITNQRETVIVWDRATGQPITHAIVWQCRRTADFAEQMKGKVPG
IVEKFQQKTGLKFDPYFSGTKIRWILDNVEGARERAEKGELCFGTVDSWLIYKLTKGKVH
VTDYSNASRTLLFNINTLEWDDELCQILEIPKSMLPEAKPSSCIYGETDPEFFGGPIRIA
GAAGDQQAALFGQTCYKEGEAKNTYGTGCFMLMNTGEKPIFSKNDLLTTIAWGLDGKVTY
ALEGSVYVAGAAIQWLRDELKIVDSSPDSEYFATRVKDTNGCYVVPAFTGLGAPYWDPYA
RGAITGLTRGVNKYHLIRATLESLAYQTYDVLHAMELDSGKHLTALKVDGGASNNNFLMQ
FQSDIINTDVLRPSCVETTAMGAAYLAGLAVGYWKSKEDVIQNWSVDREFKPEMTDADRT
AAIKGWSKAVAATRGWARE
NT seq
1500 nt
NT seq
+upstream
nt +downstream
nt
atggcaaaatatgtaatggctcttgatgccggaacaacaagtaacagatgtatccttttt
aatgagaaaggtgagatgtgctctgttgcacagaaggaatttacacagtatttcccacag
ccaggttgggttgagcatgatgccaacgaaatttggcagacacagctttcagttgctcgt
gaagcaatgagaaaggttggcgctacatcagatgatatcgcagcaattggtatcacaaat
cagcgtgagacagttatcgtttgggatagagcaacaggacagcctatcacacatgcaatc
gtatggcagtgccgtcgtacagcagattttgctgagcagatgaagggtaaggttccaggt
atcgtagagaaattccaacagaagacaggtcttaagtttgacccatacttctctggtaca
aagattcgttggatccttgataatgtagagggcgcacgtgagagagcagaaaaaggcgag
ctttgcttcggtactgtagattcttggttaatctacaagctcacaaagggcaaagtacac
gttacagactactctaacgcatctcgtacattattattcaatatcaacactcttgagtgg
gatgatgagctttgccagattcttgagattccaaagagcatgcttccagaggctaagcct
tcaagctgcatctatggtgagacagatcctgagttcttcggtggtcctatccgtatcgct
ggtgctgctggcgatcagcaggcagctcttttcggacagacatgctacaaagagggcgag
gcaaagaatacatacggaacaggttgcttcatgcttatgaacacaggcgagaagccaatc
ttctccaagaatgatcttcttacaactattgcatggggtcttgatgggaaggttacatac
gcacttgagggttctgtatacgttgctggtgctgctatccagtggctccgtgacgagtta
aagattgttgattcttcaccagattcagagtacttcgctactcgtgttaaggatacaaac
ggttgctacgttgtacctgcattcacaggtcttggagctccttactgggatccatacgca
cgtggagcaatcacaggtcttacacgtggtgttaacaaatatcaccttatcagagcaaca
cttgagtctcttgcttatcagacatacgatgttctccatgctatggagcttgattctggc
aagcatcttacagctctcaaggttgatggtggtgcatcaaacaacaacttcttgatgcag
ttccagtctgatattatcaacactgacgttcttcgtccaagctgtgttgagacaacagct
atgggtgctgcttaccttgcaggtcttgcagttggatactggaagagcaaggaagacgtt
atccagaactggtcagtagaccgcgagttcaagccagaaatgacagatgctgacagaaca
gcagctatcaagggctggtcaaaggctgtagcagcaacaagaggctgggctagggaataa
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