KEGG   Acidithiobacillus caldus SM-1: Atc_2720
Entry
Atc_2720          CDS       T01581                                 
Name
(GenBank) plasma-membrane proton-efflux P-type ATPase
  KO
K01535  H+-transporting ATPase [EC:7.1.2.1]
Organism
acu  Acidithiobacillus caldus SM-1
Pathway
acu00190  Oxidative phosphorylation
acu01100  Metabolic pathways
Brite
KEGG Orthology (KO) [BR:acu00001]
 09100 Metabolism
  09102 Energy metabolism
   00190 Oxidative phosphorylation
    Atc_2720
Enzymes [BR:acu01000]
 7. Translocases
  7.1  Catalysing the translocation of protons
   7.1.2  Linked to the hydrolysis of a nucleoside triphosphate
    7.1.2.1  P-type H+-exporting transporter
     Atc_2720
SSDB
Motif
Pfam: E1-E2_ATPase Hydrolase Hydrolase_3 Cation_ATPase_N HAD Cation_ATPase
Other DBs
NCBI-ProteinID: AEK59367
UniProt: F9ZTK6
LinkDB
Position
2776435..2778726
AA seq 763 aa
MSENACIGLSSAEAAARLQKFGPNAVQEAATHPLLTFLHKFWAPVPWMLELTLVLELVLA
KWPEAIIIALLLIFNGILGFSQEQRAQKALELLRERLRIEARVRRDGKWCSISATELVPG
DCVHIRLGDIVPADIRLTEGQILVDQSALTGESLPVDRKAEDTVYSASTVRRGEATGEVT
ATGAQSYFGKTAELVRGAGAKSHLEILVLAIVRYLVIMDGLLVAAILAYATWMQMPLAEI
LPFALILLVASVPVALPATFTLATALASLSLARQGVLVTRLAAIEEAAAMSDLCSDKTGT
LTQNRLRVSAVEAGPRQQRQELLAMAALASDEATQDPIDLAILDAAKAEGATPPQRQDFI
PFDPSSKRSEAVFAKDGQRWRALKGAPQVIAALCQGVHWEKATEELASSGARVLGVAAGP
EGSPQWLGLIGLADPLREDAADLIAKLQNFGVRVRMVTGDSPATAAHVAKELGIPGRTCD
REAIHEDCGVYAGVFPEDKFHLVQSLQKQGHIVGMTGDGVNDAPALKQAEMGVAVESATD
VAKAAASLVLTQPGLQGILTAVETGRRVYQRMLTYTLNKIVKVFQVALFLSLGFLLFHDF
VVTPLLVLLLLFANDFVTMSLAGDHVRPSPRPDRWDVRSLVWSSLVVAGAWLIYIFLVYG
AGILMHLSLPARQSLDFLGLVFSGLANVFLVRERGHLWASLPGRFLLWASLADVLVVSLL
ASQGWLMAALPLPIILVLLAATVLFTLLLDQIKVPLLRRLNRA
NT seq 2292 nt   +upstreamnt  +downstreamnt
atgagtgaaaatgcctgtatcggcctcagcagtgccgaggccgcagcacgcctgcaaaag
tttggacccaacgccgtacaggaagcggctacccatcccctgctcaccttcctccacaag
ttctgggcgcccgtgccgtggatgctggaactgaccctggtgctggaactggtcctggcc
aaatggccggaagccatcattatcgccctcttgctcattttcaatggcattctcgggttc
agccaggaacagcgggcacagaaggccctggaactgctgcgcgagcgcctgcggatagaa
gcgcgggtgcgccgtgacggcaaatggtgcagcatctcggcgacggagctcgtgcccggc
gactgcgttcacatacggttgggcgatatcgtacctgcggacatccggctcaccgaggga
cagatcctggtggatcaatccgcgctcacgggcgaatccctgcccgtggatcgcaaggcg
gaagacacggtgtactccgcctccacggtccgccggggcgaagccaccggcgaggtgacg
gcgaccggcgcccagagctacttcggcaagacggcggagttggtgcgcggcgccggagcc
aagagccacctggagatcctggtgctcgccatcgttcgctacctggtgatcatggatgga
cttctggtggccgccatcctcgcctacgccacctggatgcagatgccgctggccgaaatc
ctgcccttcgccctcatcctgctggtcgcctcggtgccggtggcactgcccgccaccttc
accctcgccactgcccttgcctccttgagtcttgcccgtcagggggtgctcgtcacccgc
ctcgccgccatcgaagaagccgcggccatgagcgatctctgcagcgacaaaaccggaacc
ctcacccagaatcgcctgcgggtgagtgcggtagaggcaggaccgcgccagcagcgccag
gagcttctggccatggcggcgctggccagcgatgaagcgacccaggaccccatcgacctg
gccatcctggatgccgccaaggcagagggcgcaactcccccgcagcgccaggatttcatt
cccttcgacccctccagtaagcgctcggaggccgtttttgcgaaagacggccaacgctgg
cgcgcgctgaagggtgcgccgcaggtgattgccgcactctgccagggagtccattgggag
aaagcgacggaagaactggccagcagcggagcccgcgtgcttggcgtcgccgctggccca
gagggctcaccccaatggctgggtctcatcggtctggccgatcctctgcgcgaagatgcc
gcggatctcatagccaagctccagaacttcggcgtgcgggtgcgtatggtcaccggcgat
agtccagccactgccgcccatgtggccaaggagcttgggatccctgggcgcacctgcgac
cgcgaggccatccatgaggactgcggcgtctatgccggagtcttcccggaagacaagttc
cacctcgtacagtccctccaaaaacaggggcatatcgtcggcatgacgggcgacggcgtg
aacgacgcgccagcactcaagcaggcggaaatgggcgtagccgtggagagtgccaccgac
gttgccaaggcggcggcgagtctcgtccttacacaacccggtctgcagggcatcctcaca
gccgtcgaaacgggtcgacgcgtctaccagcgcatgctgacctacacgctcaacaagatc
gtcaaggtttttcaggtggcactctttctgagcctcggctttttgctctttcacgatttc
gtcgtcaccccacttttggtcttgctgctgctctttgccaacgacttcgtgaccatgtcc
ctggccggggatcacgtccgcccttcgccgcgacccgatcgctgggatgtgcgcagcctc
gtctggtcttccctggtcgtggcaggggcctggctcatctacatttttctggtgtacggc
gccggtatcctgatgcatctgtccctgcccgcgcggcagagtctcgattttctgggcctc
gtcttttccggcctggccaatgtctttctggtgcgggaacgcggccatctgtgggcttcg
ctgccagggcgattcctgctgtgggcaagtcttgccgatgtgctggtggtctcattgctg
gcaagccagggctggctcatggcggccctgccgcttcccatcatcctggtcctgctggcg
gccaccgtgcttttcaccttgctgctggatcagatcaaggttcccctcctgcgccgcttg
aatcgcgcctga

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