KEGG   Burkholderia mallei FMH 23344: DM51_3884
Entry
DM51_3884         CDS       T03523                                 
Symbol
atpD
Name
(GenBank) ATP synthase F1, beta subunit
  KO
K02112  F-type H+/Na+-transporting ATPase subunit beta [EC:7.1.2.2 7.2.2.1]
Organism
bmaf  Burkholderia mallei FMH 23344
Pathway
bmaf00190  Oxidative phosphorylation
bmaf01100  Metabolic pathways
Module
bmaf_M00157  F-type ATPase, prokaryotes and chloroplasts
Brite
KEGG Orthology (KO) [BR:bmaf00001]
 09100 Metabolism
  09102 Energy metabolism
   00190 Oxidative phosphorylation
    DM51_3884 (atpD)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   00194 Photosynthesis proteins [BR:bmaf00194]
    DM51_3884 (atpD)
Enzymes [BR:bmaf01000]
 7. Translocases
  7.1  Catalysing the translocation of protons
   7.1.2  Linked to the hydrolysis of a nucleoside triphosphate
    7.1.2.2  H+-transporting two-sector ATPase
     DM51_3884 (atpD)
  7.2  Catalysing the translocation of inorganic cations
   7.2.2  Linked to the hydrolysis of a nucleoside triphosphate
    7.2.2.1  Na+-transporting two-sector ATPase
     DM51_3884 (atpD)
Photosynthesis proteins [BR:bmaf00194]
 Photosystem and electron transport system
  F-type ATPase [OT]
   DM51_3884 (atpD)
SSDB
Motif
Pfam: ATP-synt_ab ATP-synt_ab_N Pox_A32 ATPase
Other DBs
NCBI-ProteinID: AIP73421
LinkDB
Position
2:859956..861560
AA seq 534 aa
MADPQATNGTGAVCAERDASDVGDVSDVGDARDEGAGRVVAVRGAVVDVAFDGGALPALN
EALTIPVDGAAPILAEVHAHLSDAAVRALALGPTGGLRRGAAVRATGGPIRVPVGDAVLG
RLLSVTGAPGDDGAALAADVERRPIHRGAPLLAEQKSANALFATGIKVIDLLAPLAQGGK
AAMFGGAGVGKTVFVMELIHAMVERYRGISVFAGIGERSREGHEMLLDMRGSGVLGRTVL
VYGQMNEPPGARWRVPLTALAIAEYFRDERAQNVLLLMDNVFRFVQAGAEVSGLLGRLPS
RVGYQPTLASEVAALQERIASVEGAAVTAIEAVYVPADDFTDPAVTAIAAHVDSMVVLSR
AMAAEGMYPAIDPVASSSILLDPLVVGEAHVEVAIEVRRVIEHYRELQDVIALLGIDELG
ADDRRLVGRARRLQRFLTQPFAVTEAFTGQAGASVEIADTIAGCRAILRGDCDDWRESSL
YMVGTLDDARRKEAAAREADARREAAAAASGAGPGTTSDPASGSAEPQGARHGR
NT seq 1605 nt   +upstreamnt  +downstreamnt
gtggcggatccgcaggcgacgaacggcacgggcgcggtgtgcgcggagcgcgacgcgagc
gacgtgggcgatgtgagcgacgtgggcgatgcgcgtgacgagggcgccggccgcgtcgtc
gcggtgcgcggcgcggtggtcgacgtcgcgttcgacggcggcgcgctgcccgcgctgaac
gaagcgctcacgatcccggtcgacggcgccgcgccgattctcgccgaggtgcacgcacac
ctgagcgacgcggcggtgcgcgcgctcgcgctcggcccgacgggcggcctgcggcgcggc
gccgccgtgcgcgcgacgggcgggccgattcgcgtgcctgtcggcgacgcggtgctcggc
cgcctgctgagcgtgacgggcgcgcccggcgacgacggcgcggcgcttgcggcggacgtc
gagcggcggccgatccatcgcggcgcgccgctgctcgccgagcagaagagcgcgaacgcg
ctgttcgcgaccggcatcaaggtgatcgatctgctcgcgccgctcgcgcagggcggcaag
gccgcgatgttcggcggcgcgggcgtgggcaagacggtgttcgtgatggagttgatccat
gcgatggtcgagcgctatcgcgggatctcggtgttcgcgggcatcggcgagcgctcgcgc
gaggggcacgagatgctgctcgacatgcgcggctccggcgtgctcggccgcacggtgctc
gtctacgggcagatgaacgagccgcccggcgcgcgctggcgcgtgccgctcaccgcgctc
gcgatcgccgagtattttcgcgacgagcgcgcgcagaacgtgctgctgctgatggacaac
gtgtttcgcttcgtgcaggcgggcgccgaggtgtcgggcctgctcgggcggctgccgtcg
cgggtcggctaccagccgacgctcgcgagcgaggtcgcggcgctgcaggagcggatcgcc
tcggtcgagggcgcggcggtgaccgcgatcgaggccgtctacgtgcccgccgacgatttc
accgatcccgccgtcaccgcgatcgccgcgcacgtcgacagcatggtcgtgctgtcgcgc
gcgatggcggccgaaggaatgtatccggcgatcgatccggtcgcgtcgtcgtcgatcctg
ctcgatccgctcgtcgtcggcgaagcgcacgtggaggtggccatcgaggtgcgccgcgtg
atcgagcattaccgcgaattgcaggacgtgatcgcgttgctcggcatcgatgagctcggc
gcggacgaccggcggctcgtcggccgcgcgcgccggctgcagcgctttctcacgcagccg
ttcgcggtgaccgaggcgttcacggggcaggcgggcgcgtcggtcgagatcgccgacacg
atcgccggttgccgcgcgatcctgcgcggcgactgcgacgactggcgcgagagttcgctg
tacatggtcggcacgctcgacgacgcgcggcgcaaggaagcggcggcgcgcgaagcggac
gcgcgccgcgaggcggctgccgcggcgtcgggcgcgggaccgggcacgacatccgacccc
gcatccggctccgccgagccgcaaggcgcgcggcatgggcgctga

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