Rouxiella badensis subsp. acadiensis: H2866_13555
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Entry
H2866_13555 CDS
T06835
Symbol
cydA
Name
(GenBank) cytochrome ubiquinol oxidase subunit I
KO
K00425
cytochrome bd ubiquinol oxidase subunit I [EC:
7.1.1.7
]
Organism
rbad
Rouxiella badensis subsp. acadiensis
Pathway
rbad00190
Oxidative phosphorylation
rbad01100
Metabolic pathways
rbad02020
Two-component system
Module
rbad_M00153
Cytochrome bd ubiquinol oxidase
Brite
KEGG Orthology (KO) [BR:
rbad00001
]
09100 Metabolism
09102 Energy metabolism
00190 Oxidative phosphorylation
H2866_13555 (cydA)
09130 Environmental Information Processing
09132 Signal transduction
02020 Two-component system
H2866_13555 (cydA)
Enzymes [BR:
rbad01000
]
7. Translocases
7.1 Catalysing the translocation of protons
7.1.1 Linked to oxidoreductase reactions
7.1.1.7 quinol oxidase (electrogenic, proton-motive force generating)
H2866_13555 (cydA)
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Motif
Pfam:
Cyt_bd_oxida_I
Motif
Other DBs
NCBI-ProteinID:
QOI54001
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Position
2954964..2956532
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AA seq
522 aa
AA seq
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MFDIVELSRLQFALTAMYHFIFVPLTLGMAFLLAIMETVYVLSGKQIYKDMTKFWGKLFA
INFALGVATGLTMEFQFGTNWSYFSHYVGDIFGAPLAIEGLMAFFLESTLVGLFFFGWDR
LSKVQHMTVTWFVALGSNLSALWILVANGWMQNPVASEFNYETMRMEMVSFSQLVLNPVA
QVKFVHTVAAGYVTGAIFILAISSYYLLKGRDTAFAKRSFAIAASFGLAATLSVIVLGDE
SGYEMGDVQKTKLAAIEAEWETQPAPANFTLIGLPNQDKMENQYSIQIPYLLGLIATRST
DTPVTGLKELMAQHQVRIRNGIKAYTLLEELRSGNDSPQVRSDFEKAKVDLGYGMLLKRY
TPKVTDATEAQIQQATKDSIPRVLPLYFAFRIMVAAGFLILLVVGLSFLTVLRRKIGQKR
WLHRAALYALPLPWIAVEAGWFVAEYGRQPWAIGEILPTAVANSSLTAADVLTSMILICG
LYTLFLIAEMYLMFKFARLGPSSLKTGRYHFEQPAAAVQRAQ
NT seq
1569 nt
NT seq
+upstream
nt +downstream
nt
atgtttgatatcgttgagctgtcgcgtttgcagtttgctttaacggccatgtaccatttt
atttttgttccattaacgctgggtatggcgtttctgctggcaataatggaaacggtctat
gtgctttccggcaaacaaatctataaggatatgaccaagttctggggcaagttatttgcg
attaactttgcgctgggtgtggccacggggttgaccatggagttccagttcggaaccaac
tggtcttatttctcacactatgtcggtgacatctttggtgctccgctggccatcgaaggg
ctgatggcattcttccttgagtcaacgctggtcgggctcttcttcttcgggtgggaccgc
ctctccaaagtgcagcatatgacggtgacctggtttgtggctcttggctcaaacctctcg
gcgctgtggatcctcgttgccaacggctggatgcaaaacccggtagcctccgaattcaac
tacgaaaccatgcgtatggagatggtcagtttttcccaactggtgctcaacccggttgcg
caggttaaattcgtgcataccgtggccgcgggctacgtgaccggcgcgatattcattctg
gcgattagctcctactacctgcttaaaggccgtgatacggcgtttgccaaacgctcgttc
gccatcgcggcgagttttggtctggcggctacgctttcggtcatcgtgctgggtgacgag
tcaggctacgaaatgggcgacgtgcagaaaaccaagctggccgccatcgaagccgagtgg
gagacacagcccgcaccggctaactttacgctgatcggattacctaaccaggacaaaatg
gagaaccaatactccattcagattccctatctgctcggtctgattgctacgcgttcaacc
gatacgccggtcaccggcctgaaagagctaatggcacagcatcaagtgcgtattagaaac
ggtatcaaggcctacacactgctcgaagagttgcgctcgggcaatgacagtcctcaggta
cgcagcgacttcgaaaaagccaaggttgacctcggctacggcatgctgttgaaacgctac
acgccgaaggtaacggacgcgaccgaagcgcagatccagcaggccaccaaagattcaatt
ccgcgcgtgctgccgctgtattttgccttccgcattatggtggccgcaggcttcctaatt
ttgctggtggtcggtctgtcgttcctgaccgtgctacgccgcaagatagggcagaagcgc
tggctgcatcgcgcggcactttatgcgctgccgctgccgtggattgccgtcgaggcgggg
tggtttgttgctgagtatggccgccagccgtgggctatcggtgagattctgccgactgcg
gttgccaactcttcattaactgccgctgacgtactcacctcgatgatcctcatctgtggt
ctgtacacgctgttcctgattgccgagatgtacctgatgttcaagtttgcgcgtctgggg
ccaagcagtcttaagaccggtcgttatcattttgaacagcctgccgccgccgttcagcgt
gcacagtaa
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