KEGG   Methanolobus sediminis: RE474_01380
Entry
RE474_01380       CDS       T09570                                 
Symbol
hdrA2
Name
(GenBank) CoB-CoM heterodisulfide reductase HdrA2
  KO
K03388  heterodisulfide reductase subunit A2 [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6]
Organism
mseb  Methanolobus sediminis
Pathway
mseb00680  Methane metabolism
mseb01100  Metabolic pathways
mseb01120  Microbial metabolism in diverse environments
mseb01200  Carbon metabolism
Module
mseb_M00356  Methanogenesis, methanol => methane
mseb_M00357  Methanogenesis, acetate => methane
mseb_M00563  Methanogenesis, methylamine/dimethylamine/trimethylamine => methane
mseb_M00567  Methanogenesis, CO2 => methane
mseb_M00617  Methanogen
Brite
KEGG Orthology (KO) [BR:mseb00001]
 09100 Metabolism
  09102 Energy metabolism
   00680 Methane metabolism
    RE474_01380 (hdrA2)
Enzymes [BR:mseb01000]
 1. Oxidoreductases
  1.8  Acting on a sulfur group of donors
   1.8.7  With an iron-sulfur protein as acceptor
    1.8.7.3  ferredoxin:CoB-CoM heterodisulfide reductase
     RE474_01380 (hdrA2)
   1.8.98  With other, known, physiological acceptors
    1.8.98.4  coenzyme F420:CoB-CoM heterodisulfide,ferredoxin reductase
     RE474_01380 (hdrA2)
    1.8.98.5  H2:CoB-CoM heterodisulfide,ferredoxin reductase
     RE474_01380 (hdrA2)
    1.8.98.6  formate:CoB-CoM heterodisulfide,ferredoxin reductase
     RE474_01380 (hdrA2)
SSDB
Motif
Pfam: FlpD Fer4 Fer4_2 Fer4_10 Fer4_6 Fer4_7 Pyr_redox_2 Fer4_21 FAD_oxidored Fer4_16 Fer4_9 Fer4_17 FAD_binding_2 DAO GIDA NAD_binding_8 HI0933_like Fer4_15 Fer4_8 Fer4_4 Pyr_redox_3 Pyr_redox AlaDh_PNT_C Thi4 FAD_binding_3 Lys_Orn_oxgnase Fer4_13 NAD_binding_7 Amino_oxidase Lycopene_cycl Fer4_22 TrkA_N 3HCDH_N Fer4_18
Other DBs
NCBI-ProteinID: WMW25401
UniProt: A0AA51UKT5
LinkDB
Position
277615..279969
AA seq 784 aa
MRIGVYICHCGLNIAHTINVESLRDKVSELNDVAVVKNIQFMCSDSGQDSIVQDITDLDL
NHILVAACSPHLHEQTFKRVLEKAGLNPFMLEMVNIREQCSWVHMDNPQMATQKAFDLIR
MGIARLKLLDPLQLKKVPVRKDVMVIGGGVAGIEAALTLANSGHHVIMVEKEPTIGGKMA
LLNEVFPTNDCSICVLAPKMTDVNQHPNIDLITLAEVTEVSGPVGNFNVTVTRKPRYVDE
DKCKGCVDECGRVCPVEVPNRFDSGLGKTKAINMPIPQAVPQVVYIDNEYCVGCGLCKLA
CPADAINYHQKEEKLEFTVGAIILSTGYSHFDASRKPEYGYGIYPDVITNMELERLLNAA
GPTKGRVLSPSTLTVPEKVSFIQCVGSRDEQVGNPYCSRVCCMSSMKNAQLLKERYPDVD
ITIHYIDVRASGEMYEEYYIRSQEMGINFVRGKVGEILKDSDGKLKLRYEDTLSSELFEE
PTDLVVLATGMENVKDADKISRVLNLTRRTDRFFSIAHPKMRPVDSHVKGIYIAGCASGP
KEIQVSIAQGSGAAAKAMQLLSKGELEMDPLSAHVNPDKCIGCGICVDVCKFNKITMIDR
KAVVDELSCMGCGACSASCPADAIWMRNSTDAQIMAQIHAATEVKSESPLIVAFLCNWCS
YTCADLAGTSRIQYPTNIRVIRVMCAGRVDPSFVLEALEHGADGVLVAGCRLGECHYIFA
NYNAKQRMEALKEVLADVGIDPGRLSVEWISASEGERFANSIEGFVDYLKKIGPIGSELK
EAEQ
NT seq 2355 nt   +upstreamnt  +downstreamnt
atgcgaatcggagtttatatctgccattgcggactgaatatcgcacacaccatcaacgta
gaatcactcagagataaggtcagtgaactaaatgatgttgcggtggtcaagaacatacag
ttcatgtgttccgattcgggacaggactccattgtccaggacataaccgaccttgatctt
aatcacatacttgttgcagcctgttcccctcacctgcatgagcagacttttaagagagtg
cttgaaaaagcaggtctcaatccatttatgctggaaatggtcaatatccgtgagcagtgc
tcctgggtccacatggataatccgcagatggcaacccagaaggcattcgacctcatccga
atgggtattgccaggctcaaactacttgacccgttacagctaaaaaaagttcctgtcaga
aaagatgtaatggtgattggtggaggcgttgctggaattgaagccgcactcacacttgca
aattccggtcatcatgtaataatggttgagaaagaacccaccatcggcggaaagatggca
ctgctcaatgaggtttttccaaccaatgactgttctatctgtgtactggcaccaaagatg
acagatgtgaaccagcacccgaacattgatctcataacacttgcagaagttaccgaagta
agcggccctgttggaaattttaacgtaacggtaaccagaaaaccaagatatgttgacgaa
gataaatgcaaaggctgtgtggatgaatgcggacgtgtatgtcctgtagaagttccaaac
cgatttgattcaggtcttggaaaaacaaaagcaatcaacatgccaattccacaggcagtt
cctcaggtagtttatattgacaatgaatactgcgtaggatgcggactatgcaaactggca
tgtcctgccgatgctattaactaccaccagaaagaggaaaaactcgaattcactgtggga
gcgatcatactttcaaccggctacagtcatttcgatgcaagcaggaagccggaatatggt
tacggaatctaccctgatgtaattaccaatatggaactggaacgcctgctaaacgctgcc
gggcccacaaaaggcagggtactttcaccttcaacactcacggttcctgaaaaagtatcc
tttatccagtgtgtaggttcaagggatgaacaggttggaaatccatactgttcaagggta
tgctgcatgtcgagcatgaaaaatgcccagctgctcaaggaaagataccctgatgttgat
attacaatccattacattgatgtccgtgcatccggtgagatgtacgaggaatactacata
cgcagccaggaaatgggaataaatttcgtccgtggaaaagtcggagaaattcttaaggat
tctgatggcaaactgaaacttagatatgaggacacattaagcagcgaactgttcgaagaa
ccaacagaccttgttgtccttgcaaccggaatggagaacgtcaaagatgctgacaagatt
tcaagggtattgaatcttacaagacgtacagaccgtttcttctccatcgctcacccgaaa
atgagaccggtggattcacacgtaaaaggaatatacatagcaggatgcgcatccggtcct
aaagagatacaggtttccattgcacagggaagtggagcagcagccaaagcaatgcagttg
ctttcaaagggtgagcttgaaatggacccactcagtgcccacgtgaatcctgacaaatgt
attggatgtggaatttgtgtcgatgtctgtaaattcaataagatcacaatgatcgaccgc
aaagcagtggttgacgaactctcatgcatgggatgcggagcttgcagtgcatcgtgtcct
gctgatgccatatggatgcgtaacagcaccgatgcacagataatggcccaaatacatgct
gcaacagaagtcaaatcagaatcaccactaatagttgctttcctctgcaactggtgcagt
tacacatgtgctgaccttgcaggaacttcaaggatacagtacccgaccaacatccgcgta
atccgcgtcatgtgtgcaggacgtgttgacccttcttttgttctcgaagcactggaacat
ggtgcagacggagtgctagtcgcaggctgtcgtcttggagagtgccactatattttcgca
aattataatgcaaaacaaaggatggaagctttaaaagaagtccttgcagatgtcggaata
gaccctggacgtctcagtgttgaatggatatcagcttccgaaggcgaaaggtttgcaaat
tccatcgaaggctttgttgattacctgaagaagatcggccctataggttctgaacttaag
gaggctgaacaatga

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