KEGG   Metallosphaera cuprina: Mcup_1587Help
Entry
Mcup_1587         CDS       T01467                                 

Definition
putative pyruvate: ferredoxin oxidoreductase subunit alpha
Orthology
K00169  
pyruvate ferredoxin oxidoreductase, alpha subunit [EC:1.2.7.1]
Organism
mcn  Metallosphaera cuprina
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
Pyruvate:ferredoxin oxidoreductase
Dicarboxylate-hydroxybutyrate cycle
Class
Metabolism; Overview; Carbon metabolism [PATH:mcn01200]
Metabolism; Carbohydrate metabolism; Glycolysis / Gluconeogenesis [PATH:mcn00010]
Metabolism; Carbohydrate metabolism; Citrate cycle (TCA cycle) [PATH:mcn00020]
Metabolism; Carbohydrate metabolism; Pyruvate metabolism [PATH:mcn00620]
Metabolism; Carbohydrate metabolism; Propanoate metabolism [PATH:mcn00640]
Metabolism; Carbohydrate metabolism; Butanoate metabolism [PATH:mcn00650]
Metabolism; Energy metabolism; Carbon fixation pathways in prokaryotes [PATH:mcn00720]
Metabolism; Energy metabolism; Methane metabolism [PATH:mcn00680]
Metabolism; Xenobiotics biodegradation and metabolism; Nitrotoluene degradation [PATH:mcn00633]
BRITE hierarchy
SSDB OrthologParalogGene clusterGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
UniProt: 
Position
complement(1437624..1438784)
Genome map
AA seq 386 aa AA seqDB search
MQSTSVKNVIKAMVGNHAVAYAVMQARPQVLAVYPITPQTTMLEKLSEYVDSGKLKARMI
RVESEHSAMASIFGAALSGARVFTATASQGLLYMTEMIYWVGGQRVPLVAAVATRAIASP
WSILDDHQDFMSKRDAIWVQMMAENVQEAYDLTLQAFKISEDRNVLLPVMIGFDGFILTH
TMERVEVLDDETVNSFIPPREFNLIDFADPVGIGQVANPDDYIFFRHEAKKAMERAKIVI
EAVGKEFQSVANRKYGLIDCYLCDDADYLVISMGAWTGDARVAVSRVREKGIKAGLVKIT
TFRPFPKEKVKDIVRKVRGVIVMDRAFSYGSGGILAQEVKSACYGLDVPVYSVVGGLGGK
DVRPVHIEKVIEEAHANGLEDERWLI
NT seq 1161 nt NT seq  +upstreamnt  +downstreamnt
atgcaaagcacgtccgttaaaaacgtaatcaaggctatggtaggtaaccacgcggtagct
tacgccgtaatgcaggccagacctcaagttttagcagtttaccctattacgccacaaact
acaatgttagagaagttatcagagtatgtagattctggaaagctgaaggctaggatgatc
agggtggagagcgaacattccgcgatggcttctatatttggcgcagctctcagtggggcc
agggtcttcacagcaactgcgtctcagggtttactttacatgacggaaatgatatattgg
gtaggagggcagagagttccactggtcgcagctgtagcgactagagcgatagcttccccc
tggtcaattctagatgaccaccaggactttatgagcaagagggatgcaatttgggttcag
atgatggctgagaacgtccaggaggcgtacgacttgactcttcaagcgtttaaaatctca
gaagatcggaatgtactcctcccggtgatgataggctttgacggattcatacttactcat
acaatggagagagtagaggtcctagacgatgaaacggttaactctttcatcccgcctaga
gagttcaaccttatagatttcgctgatcccgttggaataggacaggtagctaaccctgat
gactacattttcttcaggcatgaagctaagaaagccatggagagggcaaagatagtaatt
gaggcggttggaaaggagttccaaagcgtcgctaatagaaagtacggtctgatcgattgc
tatctatgtgacgatgcagattacttggtgatctcgatgggtgcctggacaggagatgct
agagtcgccgttagcagggtaagggagaaggggatcaaagctggattagttaagatcacg
acattcagacccttcccaaaggaaaaggttaaggatattgttagaaaagttagaggggtg
atagttatggatagggcgttttcctatgggtcaggaggaatattggcccaggaagttaag
tctgcatgctacggtctagatgtaccagtttatagcgttgtaggaggattgggaggaaag
gacgtaaggccagtacatatagagaaggtcattgaggaagcgcacgccaacggattagaa
gatgagaggtggttaatatga

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