Pseudoalteromonas luteoviolacea: S4054249_17410
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Entry
S4054249_17410 CDS
T04577
Name
(GenBank) electron transport complex subunit RsxC
KO
K03615
H+/Na+-translocating ferredoxin:NAD+ oxidoreductase subunit C [EC:
7.1.1.11
7.2.1.2
]
Organism
plz
Pseudoalteromonas luteoviolacea
Brite
KEGG Orthology (KO) [BR:
plz00001
]
09190 Not Included in Pathway or Brite
09191 Unclassified: metabolism
99980 Enzymes with EC numbers
S4054249_17410
Enzymes [BR:
plz01000
]
7. Translocases
7.1 Catalysing the translocation of protons
7.1.1 Linked to oxidoreductase reactions
7.1.1.11 ferredoxin---NAD+ oxidoreductase (H+-transporting)
S4054249_17410
7.2 Catalysing the translocation of inorganic cations
7.2.1 Linked to oxidoreductase reactions
7.2.1.2 ferredoxin---NAD+ oxidoreductase (Na+-transporting)
S4054249_17410
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Gene cluster
GFIT
Motif
Pfam:
Complex1_51K
RnfC_N
Fer4_7
Fer4_10
SLBB
Fer4_8
Fer4_17
Fer4_9
Fer4
Fer4_16
Fer4_2
Fer4_4
Fer4_21
Fer4_13
NQRA_N
Fer4_3
Fer4_6
Fer4_22
Fer4_18
Motif
Other DBs
NCBI-ProteinID:
AOT09509
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Position
1:4071796..4074660
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AA seq
954 aa
AA seq
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METLLEQIESGKLWQFPGGIHPPEQKIVSNQVAIGSLPLPEYLVLPLKQHIGANGQLLVN
KGDHVLKGQVLTQPGTNWSLPIHAPTSGTITDIKPMPSAHPSAMPELSIVLTPDGNDTWC
NLETRSSIDGLDNKTLIDIIHHAGIAGMGGAGFPTYVKADSAKTIEYLVVNGVECEPYIT
ADDMLMREHAQGIIRGMEVMMSILSPQYALVGIEDNKPEALAAMQQAAKHNNKILVRSIP
TKYPSGGEKQLIKVLTSKEVPSGGIPADVGVLVQNVGTLFAVSEAVYEGKPLIERVVTVT
GNTINNPQNVWALLGTEVKHLVYSQGFTPVEDQRVIMGGPMMGFTLPTVRIPVVKTTNCI
LAPDNQELAVAGQEQACIRCSACADACPQTLLPQQLQWFAKGQEYDKLEEYNLFDCIECG
ACSYVCPSEIPLVQYYRVAKAEIREQKLEKVKAERAKERFEARKERLEKEQEERQNRHKR
PARSAPAKDKAKVSEALERVKKKRPEQSAVQAAIERAKAKKAEGDTSALEPDNSAVALER
AKRKEQARKYKEEKAGSDKDSAPKDAVAAAIARAKAKKAAQADNLEAQEQDPRKAAVAAA
IARAKAKKSGDEPKQASTDDPRKAAVAAAIARAKAKKAGQEPEQNSAVGSDNVKTDDPRK
AAVAAAIARAEAKKAAKDGESTTETVVEDDSADPRKAAVAAAIARAKAKKAAKEAEQVEE
PVIEDEPEDPRKAAVAAAIARAKAKKAAKEAEQVEEPVIEDEPEDPRKAAVAAAIARAKA
KKAAKEAEQVEEPVIEDEPEDPRKAAVAAAIARAKAKKAAKEAEQVEEPVVENEPEDPRK
AAVAAAIARAKAKKAAKEAEQVEEPVVEDEPEDPRKAAVAAAIARAKAKKAAKEAEQVEE
PVVDEEPESDASSSSDTEAEAISPEDKRKAAIRAAVERAKAKKKAQEQEGNDLS
NT seq
2865 nt
NT seq
+upstream
nt +downstream
nt
gtggaaacattacttgaacaaattgaaagcggcaaattgtggcaatttcccggaggtatt
caccctccagagcaaaaaatagtctcaaatcaggttgctattggttcgctccctctacca
gagtatctagtcttacctttaaagcaacatataggtgccaatggacagctccttgttaat
aaaggcgaccatgtattaaagggacaagtcttaactcaacctggtacaaactggtcactg
ccaatccatgcgccaacttcaggtaccattaccgatatcaagccaatgccttcggctcac
ccttcggcgatgccagaattaagcattgtattaacaccggatggtaatgacacatggtgt
aatttagaaactcgttcatctattgatggcctagacaataaaacactcattgacattatt
caccatgcaggcatagcaggtatgggtggtgcgggctttccaacctatgtgaaagccgat
agtgcaaaaaccattgaatacttggtcgtcaatggcgttgagtgtgaaccttatattacg
gcagatgacatgcttatgagagagcatgcacaaggcatcatccggggcatggaagtgatg
atgtctatcttatcgccgcaatatgcactagttggtatagaagataacaagccagaagct
ctggcagctatgcaacaagccgccaagcacaacaacaaaatactggttcgctctattcca
actaaatacccctccggtggcgaaaaacagctcatcaaggttctgacctctaaagaagtc
cccagtggtgggatccctgcagacgttggggttttggtacaaaacgtcggtacactgttt
gccgttagtgaagcggtttatgaaggtaagcccttaatagagcgggttgtgaccgtaact
gggaataccataaataatccacaaaacgtgtgggctttactcggcactgaagtaaagcac
ttagtttatagccaaggctttacccctgttgaggatcagcgcgtgatcatggggggtccg
atgatgggcttcacattgcctacagtgagaatacccgttgtcaaaacgacaaactgtatc
ttggcacctgataaccaagagctagctgtcgcaggtcaggaacaagcctgtatccgctgc
agtgcatgtgctgatgcgtgtccacaaactctattaccacagcaattacagtggtttgcc
aaaggccaggaatacgacaaattagaagagtacaacctatttgattgtattgagtgtggg
gcatgttcttatgtctgcccaagtgaaattccactggttcaatactatcgagttgccaaa
gcggagatccgcgaacaaaaacttgaaaaagtaaaagcggagcgagctaaagaacgcttt
gaagcccgtaaagagcgccttgaaaaagagcaagaagaaaggcaaaaccgccataagcga
ccagctcgcagtgcaccagccaaagataaggccaaagtgtctgaagcacttgagcgagtt
aagaaaaagcgcccagagcaatctgctgtgcaagcagccattgaacgcgctaaagcgaaa
aaggcagagggcgatacatccgcacttgagcctgacaacagtgcagtagcgctagaacga
gcaaaaagaaaagagcaagcaagaaagtacaaagaagagaaagcaggctcagataaagac
agtgcaccgaaagatgccgttgcagcggctattgctcgtgccaaagcgaaaaaagctgct
caagctgataatttagaagcgcaagaacaagatccacgcaaagctgcagtcgcggctgca
attgcacgcgccaaagcgaaaaaatcaggtgacgaaccaaagcaagcatcgacagatgac
cctcgtaaggcagctgtcgctgcagctatcgcccgtgctaaagcgaaaaaggctggacaa
gaacctgagcaaaacagcgcagttggttctgacaacgtgaaaacagatgatccaagaaaa
gcagctgtcgctgctgccatcgcccgtgctgaagcgaaaaaagctgctaaagatggtgaa
tcaacaacagaaaccgtcgtagaagatgactcagcagatccacgcaaagcagctgttgcc
gctgcaatagcccgtgccaaagcaaaaaaagccgccaaagaagctgagcaagtggaagag
cccgtcattgaagacgagccggaagatccacgcaaagcagctgttgccgctgcaatagcc
cgtgccaaagcaaaaaaagccgccaaagaagctgagcaagtggaagagcccgtcattgaa
gacgagccggaagatccgcgcaaagctgctgtcgctgcagccatcgcccgtgccaaagca
aaaaaagccgccaaagaagctgagcaagtggaagagcccgtcattgaagacgaacctgaa
gatccgcgcaaagctgctgtcgctgcagccatcgcccgtgccaaagcaaaaaaagccgct
aaagaagctgagcaagtggaagagccggtcgttgaaaacgaacctgaagatccgcgcaaa
gctgctgtcgctgcagccatcgcccgtgccaaagcgaaaaaagccgccaaagaagctgag
caagtggaagagcccgtcgttgaagacgagccggaagatccgcgcaaagctgctgttgct
gcagccatcgcccgtgccaaagcgaaaaaagccgccaaagaagctgagcaagtcgaagag
ccagtcgttgatgaagaacctgagagtgatgcatcatcaagctcagacacagaagccgaa
gcaatcagccctgaagataagcgtaaagccgccatacgtgccgccgttgagcgtgccaaa
gctaaaaagaaagcccaagaacaagaaggaaatgatctgtcatga
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