Methanococcoides burtonii: Mbur_0552
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Entry
Mbur_0552 CDS
T00341
Symbol
hdrA
Name
(GenBank) CoB--CoM heterodisulfide reductase iron-sulfur subunit A with C-terminal mvhD-like electron transfer domain
KO
K03388
heterodisulfide reductase subunit A2 [EC:
1.8.7.3
1.8.98.4
1.8.98.5
1.8.98.6
]
Organism
mbu
Methanococcoides burtonii
Pathway
mbu00680
Methane metabolism
mbu01100
Metabolic pathways
mbu01120
Microbial metabolism in diverse environments
mbu01200
Carbon metabolism
Module
mbu_M00356
Methanogenesis, methanol => methane
mbu_M00357
Methanogenesis, acetate => methane
mbu_M00563
Methanogenesis, methylamine/dimethylamine/trimethylamine => methane
mbu_M00567
Methanogenesis, CO2 => methane
mbu_M00617
Methanogen
Brite
KEGG Orthology (KO) [BR:
mbu00001
]
09100 Metabolism
09102 Energy metabolism
00680 Methane metabolism
Mbur_0552 (hdrA)
Enzymes [BR:
mbu01000
]
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
Mbur_0552 (hdrA)
1.8.98 With other, known, physiological acceptors
1.8.98.4 coenzyme F420:CoB-CoM heterodisulfide,ferredoxin reductase
Mbur_0552 (hdrA)
1.8.98.5 H2:CoB-CoM heterodisulfide,ferredoxin reductase
Mbur_0552 (hdrA)
1.8.98.6 formate:CoB-CoM heterodisulfide,ferredoxin reductase
Mbur_0552 (hdrA)
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Paralog
Gene cluster
GFIT
Motif
Pfam:
FlpD
Pyr_redox_2
Fer4_21
Fer4_7
Fer4
FAD_oxidored
Fer4_16
Fer4_10
Fer4_6
FAD_binding_2
Fer4_9
GIDA
HI0933_like
Fer4_2
Pyr_redox
Pyr_redox_3
DAO
Fer4_8
NAD_binding_8
AlaDh_PNT_C
Thi4
FAD_binding_3
NAD_binding_7
Fer4_17
Fer4_4
Lycopene_cycl
Fer4_22
Fer4_3
Motif
Other DBs
NCBI-ProteinID:
ABE51527
UniProt:
Q12YE9
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All DBs
Position
558693..561053
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AA seq
786 aa
AA seq
DB search
MRIGVYICHCGLNIASVINMDALHEKVEQMKGVELVKDIQFMCSDVGQDALMDDIEEHDI
DRVLVAACTPKLHENTFKKVLERAGLNTYLLEIVNIREQCSWVHMDHHDMATQKAFDLIK
MGVAKLSLLEPLRIRKIKANKDVLVIGGGVAGIEAALTLADSGTHVYMVEKEPTIGGKMA
LLNEVFPTNDCSICVLAPKMTDVQNHTNIDLFTYSEIKDISGSVGNFTVKGIQNPRYVII
DNCKGCIDECARVCPVDISNPFDSGLGKTKAINMPIPQAIPQTAFINSDYCVGCGLCKQA
CPADAIDFNMKAEEFTFTVGAVIVATGYQGFDAKRKEEYGYGVFPDVLTNMELERLLNAS
GPTRGKVVVPSTKETPKKVAFIQCVGSRDETVGNPYCSRVCCMSSMKNAQMIKERYPDTE
VTIHYIDIRAAGEMYEEYYVRSQMMGIDFIRGKVAEIQIDTQGKMLLRYEDTLECTLCQE
NYDLVVLATGMEPSNTTEPIARTLNLTKRTDRFLSIAHPKMRPVDAHINGVFIAGCASGP
KEIQVSIAQGSASAARSTRLLARGELENDPFSACVDAEKCIGCRMCEDTCNFNTIKVIDG
KAVVDEISCQTCGSCSASCPVDAIDMPHSTDAQIKAQIRAALEVKDEFPLIIAFLCNWCS
YASADLAGTSRIQYPTNVRIIKVMCAGRVDPDFVLEALQGGADGVIVAGCRLDECHYIIG
NYDAKHRMDNLKEVLEEIGLDQRRLRVEWISAAEGERFAKTIEDYVDELTELGPVGSELQ
GGDPDE
NT seq
2361 nt
NT seq
+upstream
nt +downstream
nt
atgcggataggagtttacatctgtcactgcggactgaatatcgcaagtgtcataaatatg
gatgcactacacgaaaaagtagaacagatgaagggtgtcgaacttgtcaaggacatacag
ttcatgtgttccgatgtcggacaggatgcactcatggacgatattgaagagcacgacatc
gacagagtactcgttgcagcatgtactccaaagcttcatgagaacacgttcaagaaagtg
ctggaacgggcgggacttaatacatatcttcttgagatcgtaaacatcagggagcagtgc
tcatgggtgcacatggaccatcatgacatggcaacccaaaaagccttcgacctcatcaaa
atgggggttgccaagctcagcttactggaacctttgcggataaggaagataaaagcgaac
aaggacgttctcgtcataggtggcggtgtcgccggaatagaagctgccctcacgctggca
gattccggcacgcatgtctatatggtcgaaaaggaacctaccattggcggcaaaatggca
ttgctcaatgaagtgttcccgacaaatgactgttccatatgcgttctcgcaccaaagatg
acagatgtgcagaaccacacgaacatcgaccttttcacctactccgagatcaaagacatc
tccggctcggttggcaacttcacagtaaagggcattcagaatcccagatatgtgattata
gacaactgcaaaggctgtatcgatgaatgcgcaagggtatgccctgtggacatatccaac
cccttcgacagcggtctggggaaaacaaaggccatcaacatgcccataccgcaggccatc
ccccaaacagcatttatcaacagcgattactgtgtgggttgcgggctttgcaaacaggcc
tgccctgcagatgcaattgactttaacatgaaggcagaagagttcaccttcaccgtggga
gcggtcatagtcgcaaccggttatcagggattcgatgcaaagcgcaaagaagagtacggc
tatggagtgttccccgatgtcctcaccaacatggaactggaaagattgctcaatgcttcc
ggcccaacacgtggaaaagtggtcgtaccctcgacaaaagagacccctaaaaaagtcgca
ttcatacaatgtgtaggctcaagggacgagaccgttgggaatccttactgctcacgcgtc
tgctgcatgtcctccatgaagaacgcacagatgatcaaagagcgctatcctgacaccgag
gtcaccattcactatatcgacatacgtgccgccggtgagatgtacgaagaatactacgtg
cgttcacaaatgatgggtatcgacttcattcgcggaaaagtagcggagatacagatagac
acacaagggaaaatgttgctgagatatgaggatacccttgaatgcaccctgtgccaagag
aactatgaccttgtggtgctcgcaaccggaatggaacccagcaacacgaccgaacctatt
gccagaacactgaatctcacaaaacgaactgacaggttcctttccatcgcacacccgaag
atgcgacctgtggatgcacacataaacggagtgttcatcgccggctgtgcttcaggacca
aaagagatacaagtatccattgcgcagggaagtgcctctgcagcacgttccacacgcctg
cttgcaagaggtgaactcgagaacgaccccttcagtgcatgcgtagatgctgaaaaatgt
atcggctgccggatgtgtgaagacacctgtaatttcaacaccatcaaagtcattgacgga
aaagcagtggtagatgagatctcatgccagacctgtgggtcatgcagtgcctcgtgtccg
gtagatgccatcgatatgccccatagcaccgatgcccagataaaagcacagataagggcg
gcccttgaggtaaaggatgaattcccgcttatcatagccttcctttgcaactggtgcagt
tacgcatcagcagaccttgcaggaacatcaaggatacaataccccaccaatgtgaggata
attaaagttatgtgtgcaggtcgtgttgatcccgacttcgtactggaggcattgcaaggg
ggtgctgatggtgtcatcgttgcaggatgtcgccttgacgaatgccattacatcatcggg
aactatgatgcaaagcacaggatggacaatctcaaggaagtactggaggaaatcggactc
gaccagagaagacttcgtgtcgaatggatatcagccgccgaaggcgagaggtttgcaaag
accatcgaggattacgtggatgagctgacagaactcggaccggtaggttcagagcttcag
ggaggagatccggatgagtga
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