KEGG   Sulfuriferula plumbiphila: SFPGR_17730
Entry
SFPGR_17730       CDS       T06621                                 
Name
(GenBank) hypothetical protein
  KO
K01792  glucose-6-phosphate 1-epimerase [EC:5.1.3.15]
Organism
splb  Sulfuriferula plumbiphila
Pathway
splb00010  Glycolysis / Gluconeogenesis
splb01100  Metabolic pathways
splb01110  Biosynthesis of secondary metabolites
splb01120  Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:splb00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    SFPGR_17730
Enzymes [BR:splb01000]
 5. Isomerases
  5.1  Racemases and epimerases
   5.1.3  Acting on carbohydrates and derivatives
    5.1.3.15  glucose-6-phosphate 1-epimerase
     SFPGR_17730
SSDB
Motif
Pfam: Aldose_epim Acetyltransf_10 Acetyltransf_7 Acetyltransf_1 Acetyltransf_9 Acetyltransf_5 FR47 Acetyltransf_CG DUF620
Other DBs
NCBI-ProteinID: BBP04351
LinkDB
Position
1717125..1718444
AA seq 439 aa
MSLQIEIASWERHFATLTNLRRTVFIEEQGVPEALEWDGLDAAAIHFIALDDGNAIGCAR
LLADGHIGRMAVLPGCRGKGAGRALLNAVLHAARQRHLGWLYLNAQAHAAGFYARSGFQP
VGAEFPDADIPHLRMELVMEHHTDILNQQFAIAGRLEFMDAAAGVPVVEITTPHASARIA
VQGAQLLEWQPNGQQPVLWVSRAALYQPGKGVRGGVPVCWPWFGAGEAGKPAHGFVRTRM
WEVRETGQGMADSVFIRFGMKDDESTRALWDYAFDLELIVTVGAALKMELVTRNAGTTAF
EISEGLHTYFRVGNIRHTRVLGLENTEYLDKVLGFVRDTQIGAVRFSGETDRVYVDTTTD
CVIDDAELNRKIRVAKSGSTSTVVWNPWIEKEKSFADMAADEYREMLCVETVNAGDARVT
VAAGAAHTLVALVSLEAGV
NT seq 1320 nt   +upstreamnt  +downstreamnt
atgagcctgcagatcgaaattgcaagctgggaacggcactttgccacgctgactaacctg
cgccgcaccgtgtttatcgaggaacaaggcgtgccggaggcgctggaatgggatgggctg
gacgcggctgcgatccatttcattgcactggacgatggcaacgcgatcggctgcgctcga
ctgcttgccgatggccatattggccgcatggcggtactgccaggctgtcgcggcaaaggc
gccgggcgcgcattgctgaatgcggtattgcatgccgcgcgtcagcggcatctgggctgg
ctgtatctgaatgcccaggcccacgcagcgggattttatgcccgctccggttttcaaccc
gttggcgcggaattccccgacgccgatattccccacctacgtatggagcttgttatggaa
caccacactgatatcctcaaccagcagtttgccatcgccggccggcttgaatttatggat
gccgcagcgggtgtgccggtggtcgaaattaccacaccgcacgcaagcgcacgtattgca
gtacagggtgcgcagctgctggaatggcagccaaacgggcaacagccggtgttgtgggtg
agccgtgctgcgctgtatcagccaggtaaaggggtgcgcggtggcgtaccagtgtgctgg
ccgtggttcggggcgggtgaggcaggtaaaccggcccatggttttgtgcgcacgcgcatg
tgggaagtgcgcgaaaccgggcagggcatggccgatagcgtatttattcggttcggcatg
aaagacgacgaatccacccgtgcgctgtgggattatgctttcgacctggagctgattgtc
accgtgggtgcggcactcaagatggaactggtgacgcggaatgccggtaccacggcattt
gagatcagcgaggggctgcatacttatttccgtgtgggcaatatcaggcacacccgggta
ttggggctggaaaacaccgagtacctggacaaagtgttgggttttgtccgtgacacccag
atcggggcggtcaggttcagtggcgaaaccgaccgggtttatgtcgacactacaaccgat
tgtgtgattgatgacgcggagttgaaccgcaagatccgtgttgccaaatcaggtagcact
tcaactgtggtgtggaacccatggatagaaaaagaaaaaagctttgccgacatggccgct
gatgaataccgggagatgctgtgtgtagaaacggtgaacgcgggcgatgcgcgcgtgact
gtcgccgcaggggccgcacatacgctggtggcattggtcagtctggaggcgggcgtgtaa

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