Burkholderia mallei BMQ: DM76_2603
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Entry
DM76_2603 CDS
T03490
Name
(GenBank) proton-translocating NADH-quinone oxidoreductase, chain L family protein
KO
K00341
NADH-quinone oxidoreductase subunit L [EC:
7.1.1.2
]
Organism
bmaq
Burkholderia mallei BMQ
Pathway
bmaq00190
Oxidative phosphorylation
bmaq01100
Metabolic pathways
Module
bmaq_M00144
NADH:quinone oxidoreductase, prokaryotes
Brite
KEGG Orthology (KO) [BR:
bmaq00001
]
09100 Metabolism
09102 Energy metabolism
00190 Oxidative phosphorylation
DM76_2603
Enzymes [BR:
bmaq01000
]
7. Translocases
7.1 Catalysing the translocation of protons
7.1.1 Linked to oxidoreductase reactions
7.1.1.2 NADH:ubiquinone reductase (H+-translocating)
DM76_2603
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Motif
Pfam:
Proton_antipo_M
Proton_antipo_N
Proton_antipo_C
DUF3737
GET2
Motif
Other DBs
NCBI-ProteinID:
AIO63819
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Position
1:2847887..2849926
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AA seq
679 aa
AA seq
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MSTTLNENLLLAIPLAPLAGSLIAGLFGNAVGRKGAHRVTILGVALAFVLSALVFFQVLD
GASFNATVYEWMNVGSLKLEVGFLVDTLTAMMMVVVTFVSLMVHIYTIGYMSEEDGYQRF
FSYISLFTFSMLMLVMSNNFLQLFFGWEAVGLVSYLLIGFYFTRESAIYANMKAFLVNRV
GDFGFLLGIGLILAYAGSMNYGEVFAKRAELASLHFPGTQWGLLTVACICLFIGAMGKSA
QFPLHVWLPDSMEGPTPISALIHAATMVTAGIFMVTRMSPLFELSDAALSFITVIGAITA
LFMGFLGIVQNDIKRVVAYSTLSQLGYMTVALGVSAYPVAVFHLMTHAFFKALLFLGAGS
VIIGMHHDQDMRNMGGLRKYMPITWITSLVGSLALIGTPFFSGFYSKDSIIDAVKLSHLP
GSGFAYFAVVASVFVTALYSFRMYFLVFHGEERFRHPKTFGNNHGAESAAHHGHDDHGHA
HEPHETPWVVWVPLVLLAIPSVIIGAIAIGPMLYGDFFQHGVAFDKVIFIGQNHPALAEM
AEEFHGWTAMGLHSVSGLPMWLALAGVVVAWFLYLKRPDLPAAIRRAFGPIYTLLDNKYY
MDKINEVVFTKGSIAIGRGLWKEGDVVVIDGLVNGSARFIGWFAGVIRFLQSGYIYHYAF
AMIIGMLGLLTLFVTLGGK
NT seq
2040 nt
NT seq
+upstream
nt +downstream
nt
atgtcaacgacactcaatgaaaacctgctgctggcgattccgctcgcgccgctggccggc
tcgctgatcgcggggctgttcggcaacgcggtggggcgcaagggcgcgcatcgcgtgacg
attctcggcgtcgcgctcgccttcgttctttccgcgctggtgttcttccaggtgctggac
ggcgcgagcttcaacgcgaccgtctacgaatggatgaacgtcggctcgctgaaactcgag
gtgggcttcctcgtcgatacgctgaccgcgatgatgatggtcgtcgtcacgttcgtgtcg
ctgatggtgcacatctacacgatcggctacatgtcggaggaggacggctaccagcgcttc
ttctcgtacatctcgctgttcacgttctcgatgctgatgctcgtgatgagcaacaacttc
ctgcagctgttcttcggctgggaagcggtgggtctcgtgtcgtacctgctgatcggcttc
tacttcacgcgcgagagcgcgatctacgcgaacatgaaggcgttcctcgtgaaccgcgtc
ggcgatttcgggttcctgctcggcatcggtctcatcctcgcgtacgccggctcgatgaac
tacggcgaagtgttcgccaagcgcgcggagctcgcgtcgctgcacttcccgggcacccag
tggggcctgctgacggtcgcctgcatctgcctgttcatcggcgcgatgggcaagtccgcg
cagttcccgctgcacgtgtggctgcccgattcgatggaaggcccgacgccgatctccgcg
ctgattcacgcggcgacgatggtgacggcgggcattttcatggtcacgcgcatgtcgccg
ctgttcgagctgtccgacgccgcgctgtcattcatcaccgtgatcggcgcgatcacggcg
ctcttcatgggcttcctcggcatcgtccagaacgacatcaagcgcgtcgtcgcgtattcg
acgctgtcgcagctcggctacatgacggtcgcgctcggcgtgtccgcgtacccggtcgcg
gtgttccacctgatgacgcacgcgttcttcaaggcgctgctgtttctcggcgcgggctcg
gtgatcatcggcatgcaccacgatcaggacatgcgcaacatgggcggcctgcgcaagtac
atgccgatcacgtggatcacgtcgctcgtcggctcgctcgcgctgatcggcacgccgttc
ttctcgggcttctattcgaaggactcgatcatcgacgcggtgaagctgtcgcacctgccg
ggctcgggcttcgcatacttcgcggtcgtcgcgagcgtgttcgtcaccgcgctgtactcg
ttccggatgtatttcctcgtgttccacggcgaggagcgcttccgtcatccgaagacgttc
ggcaacaaccacggcgccgaatcggccgcgcatcacggccatgacgaccacggccacgcg
cacgagccgcacgaaacgccgtgggtcgtgtgggtgccgctcgtgctgctcgcgattccg
tcggtcatcatcggcgcgatcgcgatcggcccgatgctgtacggcgacttctttcagcac
ggcgtcgcgttcgacaaggtgatcttcatcggccagaaccacccggcgctcgccgaaatg
gcggaggagttccacggctggacggcgatggggctgcactcggtgtcgggcctgccgatg
tggctcgcgctcgcgggcgtcgtcgtcgcatggttcctgtacctgaagcgcccggatctg
ccggcggcgatccgtcgcgcgttcggcccgatctatacgctgctcgacaacaagtactac
atggacaagatcaacgaggtcgtgttcacgaagggttcgatcgcgatcggccgcggtctg
tggaaggagggcgacgtcgtggtgatcgacggcctcgtcaacggcagcgcgcgcttcatc
ggctggttcgccggcgtgatccgcttcctccaatccggttacatctatcactacgcgttc
gccatgatcatcggcatgctggggctcctgaccctgtttgtaacgctcggcggcaaataa
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