KEGG   Acidilutibacter cellobiosedens: EQM13_17805
Entry
EQM13_17805       CDS       T05805                                 
Name
(GenBank) UDP-N-acetylglucosamine 1-carboxyvinyltransferase
  KO
K00790  UDP-N-acetylglucosamine 1-carboxyvinyltransferase [EC:2.5.1.7]
Organism
spoa  Acidilutibacter cellobiosedens
Pathway
spoa00520  Amino sugar and nucleotide sugar metabolism
spoa00550  Peptidoglycan biosynthesis
spoa01100  Metabolic pathways
spoa01250  Biosynthesis of nucleotide sugars
Module
spoa_M00995  UDP-MurNAc biosynthesis, Fru-6P => UDP-MurNAc
Brite
KEGG Orthology (KO) [BR:spoa00001]
 09100 Metabolism
  09107 Glycan biosynthesis and metabolism
   00520 Amino sugar and nucleotide sugar metabolism
    EQM13_17805
   00550 Peptidoglycan biosynthesis
    EQM13_17805
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01011 Peptidoglycan biosynthesis and degradation proteins [BR:spoa01011]
    EQM13_17805
Enzymes [BR:spoa01000]
 2. Transferases
  2.5  Transferring alkyl or aryl groups, other than methyl groups
   2.5.1  Transferring alkyl or aryl groups, other than methyl groups (only sub-subclass identified to date)
    2.5.1.7  UDP-N-acetylglucosamine 1-carboxyvinyltransferase
     EQM13_17805
Peptidoglycan biosynthesis and degradation proteins [BR:spoa01011]
 Precursor biosynthesis
  Transferase/Dehydrogenase
   EQM13_17805
SSDB
Motif
Pfam: EPSP_synthase
Other DBs
NCBI-ProteinID: QAT63284
UniProt: A0A410QHD3
LinkDB
Position
complement(3683091..3684341)
AA seq 416 aa
MKKIIIKGGNKLRGTVNISGFKNAALPIMVATILTKDKCIIENLPMIRDVDCLKEILIKI
GAKVKLIEKGAMEIDTTNIEKCKLTDDINRKMRASYYLLGAGLGRFKESEVLYPGGCDIG
VRPIDQHIKGFEALGATVEIDHGIIKCKADKLRGNRIYLDVVSVGATINIMMAATLAEGI
TIIENAAREPHIVDVANFINACGGKIIGAGTDIIKIVGVERLKGCNYSVIPDQIEAGSYM
IMGVATEGDIIVNNVIPKHLEPVTAKLREMGVEVTEYGESIRVTVNKKLRSVDIKTLPYP
GFPTDLQQLMSALLSKTKGTSVVTETIFDGRFKFVDELKRMGANILVDGRIAVIKGVENL
MGTRVEAKDLRGGAALIVAALSANGVTEINKAYHIERGYEDIIDKLLNLGADIKEG
NT seq 1251 nt   +upstreamnt  +downstreamnt
atgaaaaagataatcataaaaggtggaaataaattaagaggtacagttaatataagcggt
tttaagaatgcagctttacctattatggtagcgacgattctgactaaagacaaatgcata
attgaaaatttacctatgattcgagacgtggattgtttaaaagagatattgattaagatt
ggggcaaaggtaaaattaatcgaaaaaggtgctatggagatagatacaactaatatagaa
aaatgcaaattaacagatgatatcaatagaaaaatgagagcgtcctattaccttttagga
gcgggattgggaaggtttaaagaatccgaagtattatatccgggaggctgtgatataggg
gtgagacctattgatcagcatattaaaggatttgaagctcttggcgctacagttgaaata
gatcatggaattataaaatgtaaggctgataaattaagagggaatagaatatacttagat
gtagtaagtgttggagctaccattaatattatgatggcagcaacattagcagaaggaata
accattattgaaaatgcagcaagagagcctcatatagtagatgttgctaattttataaat
gcttgcggagggaaaataataggagcaggaacggatattattaaaatagtaggagtagaa
aggcttaagggatgtaattattccgtaattccggatcagatagaagcaggttcgtatatg
attatgggagttgccacagagggagatataattgtaaataatgttattccaaagcattta
gaaccggtaacggcaaagctgagagaaatgggggtagaagtaacggaatatggagaatct
attagagttactgtaaataagaaattaaggagtgttgatattaaaacattgccatatccg
ggatttcctactgatttgcagcaactgatgtctgctcttctttcaaagacaaaaggaacc
agcgtagttacggaaactatatttgacggaagatttaaatttgtagatgaactgaaaaga
atgggagcaaatatattggtagacggtagaattgctgtcataaaaggtgttgaaaacctt
atgggaactcgcgtggaagccaaagatttaaggggaggagcagcactaatagtagcagca
ttatccgctaatggagttactgaaataaataaggcatatcacatagaaagaggatatgag
gatattatagataaattactgaatttaggcgcagatattaaggaaggttaa

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