KEGG   Nonlabens dokdonensis: DDD_3081
Entry
DDD_3081          CDS       T02441                                 
Name
(GenBank) Fe-S oxidoreductase (Ferredoxin)
  KO
K08264  heterodisulfide reductase subunit D [EC:1.8.98.1]
Organism
ndo  Nonlabens dokdonensis
Pathway
ndo00680  Methane metabolism
ndo01100  Metabolic pathways
ndo01120  Microbial metabolism in diverse environments
ndo01200  Carbon metabolism
Brite
KEGG Orthology (KO) [BR:ndo00001]
 09100 Metabolism
  09102 Energy metabolism
   00680 Methane metabolism
    DDD_3081
Enzymes [BR:ndo01000]
 1. Oxidoreductases
  1.8  Acting on a sulfur group of donors
   1.8.98  With other, known, physiological acceptors
    1.8.98.1  dihydromethanophenazine:CoB-CoM heterodisulfide reductase
     DDD_3081
SSDB
Motif
Pfam: CCG DUF6227 ANAPC2
Other DBs
NCBI-ProteinID: AGC78208
UniProt: L7WGY1
LinkDB
Position
3325499..3326290
AA seq 263 aa
MSNNLVVPTAAEFIAQGKQPEVLFWVGCSGSFDDRAKKITKAFVKLLNKAGVEFAVLGAE
ESCSGDPAKRAGNEFLFQMQAMMNIEVLNGYEVKNIVTACPHCFNTLKNEYPELGGNYEV
VHHTQFLKTLISDGRLKIEGGKFKGKKITYHDPCYLGRANNEYEAPRELLEKLDVALVEM
KRSRRNGLCCGAGGAQMFKEPEEGNKDINIERTDEAIDTGADIIAAGCPFCNTMMTDGVK
AAEKEEKIEVLDIAELIANAEEL
NT seq 792 nt   +upstreamnt  +downstreamnt
atgagtaacaatttagtagtaccaacagccgcagaatttatagcacaaggaaaacagcct
gaggtgttgttttgggtaggatgtagtggaagttttgacgatagagcaaagaaaatcacc
aaagcttttgtgaaattgctcaataaggcaggagtagagtttgcagttttaggagctgaa
gaaagttgttctggagatccagcaaaacgtgctgggaatgaatttcttttccagatgcaa
gcgatgatgaatatcgaggtgttgaatggctatgaggttaaaaacatagtaactgcttgt
ccgcattgtttcaatactcttaaaaatgaatatccagaattaggtggtaattatgaagta
gttcatcatactcaatttttgaaaaccctcatttctgatggaagattaaaaattgaagga
ggaaaatttaagggtaagaagatcacttatcacgatccgtgttatctaggtagagcaaat
aatgaatatgaagcacctagagaacttcttgagaaattagatgtagcgctggttgaaatg
aaacgcagccgtcgtaatggtttatgttgcggtgctggtggagcccaaatgtttaaagaa
cctgaagaaggaaataaagatatcaatatagaacgtacagatgaggctatagatactgga
gccgatattattgctgcaggttgccctttctgtaatacgatgatgacagatggtgttaaa
gccgcagagaaagaagaaaaaatcgaagtactagacatagcagaattaatcgcaaacgca
gaagaattataa

DBGET integrated database retrieval system