KEGG   Methanocella paludicola: MCP_2613Help
Entry
MCP_2613          CDS       T01142                                 

Definition
pyruvate synthase alpha chain
Orthology
K00169  
pyruvate ferredoxin oxidoreductase, alpha subunit [EC:1.2.7.1]
Organism
mpd  Methanocella paludicola
Pathway
Glycolysis / Gluconeogenesis
Citrate cycle (TCA cycle)
Pyruvate metabolism
Nitrotoluene degradation
Propanoate metabolism
Butanoate metabolism
Methane metabolism
Carbon fixation pathways in prokaryotes
Metabolic pathways
Microbial metabolism in diverse environments
Carbon metabolism
Module
Pyruvate oxidation, pyruvate => acetyl-CoA
Brite
KEGG Orthology (KO) [BR:mpd00001]
 Metabolism
  Overview
   01200 Carbon metabolism
    MCP_2613
  Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    MCP_2613
   00020 Citrate cycle (TCA cycle)
    MCP_2613
   00620 Pyruvate metabolism
    MCP_2613
   00640 Propanoate metabolism
    MCP_2613
   00650 Butanoate metabolism
    MCP_2613
  Energy metabolism
   00720 Carbon fixation pathways in prokaryotes
    MCP_2613
   00680 Methane metabolism
    MCP_2613
  Xenobiotics biodegradation and metabolism
   00633 Nitrotoluene degradation
    MCP_2613
Enzymes [BR:mpd01000]
 1. Oxidoreductases
  1.2  Acting on the aldehyde or oxo group of donors
   1.2.7  With an iron-sulfur protein as acceptor
    1.2.7.1  pyruvate synthase
     MCP_2613
BRITE hierarchy
SSDB OrthologParalogGene clusterGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
NITE: 
UniProt: 
Position
2567676..2568872
Genome map
AA seq 398 aa AA seqDB search
MARMHVVEGSMAVAEAAKACRPAVVSAYPITPQTHIVEDISQMIADGDLQNCEYVRTESE
FSAASMVQGAEAAGARTFSATSSQGAVLMYEVLFSIAGMRLPCVIVMANRSVSSPISIWN
DHQDAISARDNGWIQLWAEDAQEAADLVIQAYKIGEDHRILLPVMVNMDGFSLTHVYEPV
EEYDQKMVDEFLPPYKPLYALDPKNPISMGTLAQPEVYTEARYMVHNAQLRAKEVIEDVA
KEFGQMFGRYYGGLIDTYRMEDAEVVLVAMGSIIGTMKDAVDEMRDVGMKVGIVKVRSYR
PFPVEALRAALKDVKCICVIDRDISMGMEGALFTDLRAGLYAKSSAEVLGFIAGMGGRDI
TIQDFKNMANKGFAKLKGEKVSEMEWYNLDVDILPEGI
NT seq 1197 nt NT seq  +upstreamnt  +downstreamnt
atggcccgcatgcatgtcgtcgagggctccatggcagtggccgaggccgctaaggcctgc
cggccggccgtggtgtccgcttacccgatcaccccccagacgcacatcgtcgaggacata
tcccagatgatagcggacggggaccttcagaattgcgagtacgtgaggaccgagagcgag
ttcagcgccgcgtccatggtacagggcgcggaggccgccggagccaggacatttagcgcc
acgtcgagccagggcgccgtgctcatgtacgaggtgctgttctcgatagcgggcatgcgc
ctgccctgcgtcatcgtgatggcgaaccgctccgtgtcgtcgcccatctcaatatggaac
gaccaccaggacgccatatccgccagggataacggctggatacagctctgggcggaggac
gcgcaggaggccgcggacctggtcatccaggcctacaagatcggcgaggaccaccgtata
ctgctgccggtcatggtcaacatggacggcttctcgctcacgcacgtctacgagccggtc
gaagaatacgaccagaagatggtggacgagttccttcccccgtataagccgctgtacgcg
ctggacccgaagaatcccatatcgatgggcacgctggcgcaacccgaggtctataccgag
gcccggtacatggtgcacaatgcccagctccgcgctaaagaagtgatcgaggacgtcgcg
aaggagttcggccaaatgttcgggcggtactatggcggccttattgacacctacaggatg
gaggacgcggaagtcgtgctcgtcgcgatgggctccattatcggcacgatgaaggacgcc
gttgacgagatgcgggatgtggggatgaaggtcggcatcgtgaaggtgcggtcctaccgg
ccgttcccggtcgaggccctgcgtgccgctctcaaggacgtgaagtgcatctgcgtcatc
gacagggacatctccatgggaatggagggggcgctttttacggatctgcgcgccggcctc
tatgcaaagtccagcgccgaggtgctcggcttcatcgcgggcatgggcggcagggacatc
accatccaggacttcaagaacatggcgaacaagggctttgcaaagctcaaaggcgagaag
gtgtcggagatggaatggtacaaccttgacgtcgacatactcccggaggggatataa

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