KEGG   Thermoproteus tenax: TTX_2037Help
Entry
TTX_2037          CDS       T01641                                 

Gene name
gor
Definition
putative ferredoxin-dependent glyceraldehyde-3-phosphate oxidoreductase (EC:1.2.7.6)
Orthology
K11389  
glyceraldehyde-3-phosphate dehydrogenase (ferredoxin) [EC:1.2.7.6]
Organism
ttn  Thermoproteus tenax
Pathway
Glycolysis / Gluconeogenesis
Metabolic pathways
Microbial metabolism in diverse environments
Carbon metabolism
Biosynthesis of amino acids
Module
Glycolysis (Embden-Meyerhof pathway), glucose => pyruvate
Glycolysis, core module involving three-carbon compounds
Brite
KEGG Orthology (KO) [BR:ttn00001]
 Metabolism
  Overview
   01200 Carbon metabolism
    TTX_2037 (gor)
   01230 Biosynthesis of amino acids
    TTX_2037 (gor)
  Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    TTX_2037 (gor)
Enzymes [BR:ttn01000]
 1. Oxidoreductases
  1.2  Acting on the aldehyde or oxo group of donors
   1.2.7  With an iron-sulfur protein as acceptor
    1.2.7.6  glyceraldehyde-3-phosphate dehydrogenase (ferredoxin)
     TTX_2037 (gor)
BRITE hierarchy
SSDB OrthologParalogGene clusterGFIT
Motif
Pfam: 
Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
UniProt: 
Position
complement(1778178..1780055)
Genome map
AA seq 625 aa AA seqDB search
MRVAFIDLEKLSVNIAERDAQGPVSLGVQIHEERETWRTDPLSPLSPLVIGMGNFVGGRL
IGAHRIIAVFKSPMSKTLQASALGGAAYKMMGAGIDAFVFLGRAPWPVVVLASPEGVRIE
RAELRYEYQGLRGVYAFTKFLFDKYRDFFAANNARSIVVGPASWTTYNGALASIDISPGG
ELSKGAEDFAARGGPGTVAAQGHNLAAIIAGGKARARHQAIADIHKIDEIVKIKLKKGYL
EALQEKTVKYRYDPTIGTGGTFGVNYVHYRDLVPLFGYKSIYLDREERIRHVDALLRLFW
RPFNELVFEKARSWYNCGEPCPVLCKKVWRGKKVDYEPFHAMGPFIGNYVFEEAVPLVEL
VDEQGLDAIEMGHVVAWIFDAVEQGLLEPEEVGISRRPVFDPSKFNPETDSRTNAKLAAE
VVAGFVERSTEVLGIVARSGLRAAARLLEEKFSKRVAERGVRFRDLAVYVVYGEEGYMTP
NFYWAPGMVAPMYVQGKYWTNYNPTFMSPEEFAKTAYDRAVIEALIEDSGICRFHRGWAE
PILGELYELIGRRLDRDLYKRFAEYSIKAGADPRPWESRRAMDVVSTMARELGAKDWKFD
RYEEYIEWWRRYKNSLDKYLGIVSA
NT seq 1878 nt NT seq  +upstreamnt  +downstreamnt
atgcgcgtcgcctttatagatctcgagaagctctctgtgaatatcgccgagagggacgcc
caaggccccgtcagcttaggagtccagatacacgaggagagagaaacgtggagaacggat
cctctctcgcccctttcacctctggtgatcggcatgggcaacttcgtgggcgggcgcctc
attggagcccacagaatcatcgctgtgttcaaaagccctatgagtaagacgcttcaggcg
agcgccttggggggagcggcatacaagatgatgggcgccggcatagatgcctttgtattc
ctagggagggccccgtggcccgttgtcgtgttggcctccccagagggagtgaggatagag
agggctgagctcagatacgagtaccagggactgaggggcgtgtacgccttcactaagttc
ctcttcgacaaatacagagacttcttcgcagcaaacaacgcgcgatctatagtggtgggc
cccgcctcttggacgacctacaacggggcgttagcatctatagacatatctcctgggggc
gagctctctaaaggcgccgaggacttcgccgccagaggcgggccgggcactgtggccgcc
cagggacacaatttagctgcgataatagcgggcggaaaggcgagggccaggcatcaagct
atagcagacatacacaagatagacgagatagtcaagatcaagctgaagaagggctatctc
gaggcccttcaagagaagacggtcaagtataggtatgatccaacgatagggacaggagga
acattcggcgtcaactacgtgcactatagagacttggtgccgctcttcggctacaaatcc
atttacttagacagagaggagaggatacgccatgtcgatgccttattgagattgttctgg
agaccgttcaacgagctagtctttgagaaggccaggagttggtacaactgcggcgagccg
tgtccagtgttgtgtaagaaggtctggcgcggcaagaaggtggactatgagcccttccac
gccatgggccccttcataggcaactacgtgtttgaggaggccgtgcccctagtggagctg
gtggacgaacaaggcctcgacgcaatagaaatgggccatgtcgtggcatggatcttcgac
gcagttgagcagggacttctcgagcccgaggaagttggtataagcaggaggcccgtcttt
gacccatccaagtttaatccagagacagactccagaaccaacgcgaagttggcggccgag
gtagtcgccgggttcgtcgagagatccaccgaggtattggggattgtggccaggagcggt
ctaagggcggccgcacgcttgttggaagagaaattctccaagagagtggccgaaaggggt
gttcggtttagagacctcgcagtctatgtagtctacggcgaggagggctatatgactccg
aacttctactgggctcccggcatggtcgcgcccatgtatgtccaaggaaaatattggacc
aactacaatccgacgttcatgtcgcctgaggagttcgccaaaactgcgtatgatcgcgct
gtgatcgaggcgttgatcgaggactcgggcatatgtagattccacagagggtgggcggag
cccatattgggcgagctctacgagctgataggaagaaggctcgacagagacctctataaa
agattcgcagagtattcgataaaggccggcgcagatccaaggccttgggagagcaggagg
gctatggacgtagtctcgactatggctagagagttgggtgcaaaggattggaagttcgat
aggtatgaagaatatatagagtggtggcgtcgctacaaaaactcgctcgataaataccta
ggtattgtctcggcttag

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