Q8I0V2 · Q8I0V2_PLAF7

Function

function

Produces ATP from ADP in the presence of a proton gradient across the membrane.

Catalytic activity

GO annotations

all annotationsall molecular functionvirus receptor activitydna bindingrna bindingcytoskeletal motor activitycatalytic activitygtpase activitystructural molecule activitytransporter activitycytoskeletal protein bindinglipid bindingcyclase activityantioxidant activityoxidoreductase activitytransferase activityhydrolase activitylyase activityisomerase activityligase activityprotein tag activitycargo receptor activityhistone bindingprotein folding chaperonetranslation regulator activitynutrient reservoir activityreceptor ligand activitymolecular transducer activitymolecular adaptor activitytoxin activitycell adhesion mediator activitymolecular function regulator activityvirus coreceptor activitycatalytic activity, acting on a proteincatalytic activity, acting on dnacatalytic activity, acting on rnamolecular carrier activitytranscription regulator activitygeneral transcription initiation factor activitymolecular sensor activitymolecular sequestering activityatp-dependent activityother molecular functionall biological processmitotic cell cyclecytokinesiscytoplasmic translationimmune system processmuscle system processcirculatory system processrenal system processrespiratory system processcarbohydrate metabolic processgeneration of precursor metabolites and energydna replicationdna repairdna recombinationchromatin organizationdna-templated transcriptionregulation of dna-templated transcriptiontrna metabolic processprotein foldingprotein glycosylationamino acid metabolic processmodified amino acid metabolic processlipid metabolic processvitamin metabolic processsulfur compound metabolic processintracellular protein transportnucleocytoplasmic transportautophagyinflammatory responsemitochondrion organizationcytoskeleton organizationmicrotubule-based movementperoxisome organizationlysosome organizationchromosome segregationcell adhesionestablishment or maintenance of cell polarityprogrammed cell deathphotosynthesismrna metabolic processsnrna metabolic processvesicle-mediated transportreproductive processdigestive system processsignalingcell differentiationprotein catabolic processextracellular matrix organizationregulatory ncrna-mediated gene silencingtelomere organizationcell junction organizationwound healingribosome biogenesiscilium organizationanatomical structure developmentcell motilitynervous system processendocrine processprotein maturationtransmembrane transportnucleobase-containing small molecule metabolic processhepaticobiliary system processmembrane organizationprotein-containing complex assemblycell wall organization or biogenesisnitrogen cycle metabolic processprotein localization to plasma membranedefense response to other organismdetoxificationmeiotic nuclear divisionmitotic nuclear divisionmitochondrial gene expressioncarbohydrate derivative metabolic processother biological processall cellular componentnuclear chromosomeextracellular regionextracellular spacecell wallnucleusnuclear envelopenucleoplasmchromosomenucleolusmitochondrionlysosomeendosomevacuoleperoxisomeendoplasmic reticulumgolgi apparatuslipid dropletmicrotubule organizing centercytosolribosomecytoskeletonplasma membraneciliumplastidthylakoidexternal encapsulating structureextracellular matrixcytoplasmic vesicleorganelleother cellular component
Cell color indicative of number of GO terms
AspectTerm
Cellular Componentchloroplast
Cellular Componentmitochondrion
Cellular Componentproton-transporting ATP synthase complex
Cellular Componentproton-transporting ATP synthase complex, catalytic core F(1)
Molecular FunctionATP binding
Molecular FunctionATP hydrolysis activity
Molecular Functionproton-transporting ATP synthase activity, rotational mechanism
Molecular Functionproton-transporting ATPase activity, rotational mechanism
Biological Processproton motive force-driven mitochondrial ATP synthesis
Biological Processproton transmembrane transport

Keywords

Enzyme and pathway databases

Protein family/group databases

    • 3.A.2.1.16the h+- or na+-translocating f-type, v-type and a-type atpase (f-atpase) superfamily

Names & Taxonomy

Protein names

  • Recommended name
    ATP synthase subunit beta
  • EC number

Gene names

    • ORF names
      PF3D7_1235700

Organism names

  • Taxonomic identifier
  • Strain
    • Isolate 3D7
  • Taxonomic lineage
    Eukaryota > Sar > Alveolata > Apicomplexa > Aconoidasida > Haemosporida > Plasmodiidae > Plasmodium > Plasmodium (Laverania)

Accessions

  • Primary accession
    Q8I0V2

Proteomes

Organism-specific databases

Subcellular Location

PTM/Processing

Proteomic databases

PTM databases

Interaction

Subunit

F-type ATPases have 2 components, CF1 - the catalytic core - and CF0 - the membrane proton channel. CF1 has five subunits: alpha3, beta3, gamma1, delta1, epsilon1. CF0 has three main subunits: a, b and c.

Protein-protein interaction databases

Structure

Family & Domains

Features

Showing features for domain.

TypeIDPosition(s)Description
Domain197-475AAA+ ATPase

Sequence similarities

Belongs to the ATPase alpha/beta chains family.

Phylogenomic databases

Family and domain databases

Sequence

  • Sequence status
    Complete
  • Length
    535
  • Mass (Da)
    58,394
  • Last updated
    2003-03-01 v1
  • Checksum
    BBB69DD5876BBBC8
MHKLKLFNHWKKLPMFMKFGGSPNLRMNCRYVSSSEHLNMKKNISVGNKNTEVSNKIKIGKIAQVIGAVVDVEFEDTPPSILNALEVELDNKKLILEVAQHLGNKVVRTIAMDATDGLVRGQEVKDSGNPICVPVGKETLGRIMNVIGEPIDECGHINHKKTLPIHRDPPLFTDQSTEPALLITGIKVVDLIAPYAKGGKIGLFGGAGVGKTVLIMELINNVAKKHGGYSVFAGVGERTREGNDLYHEMITTGVIKKKKIGNNEFDFNGSKAALVYGQMNEPPGARARVALTGLTVAEYFRDEENQDVLLFIDNIYRFTQAGSEVSALLGRIPSAVGYQPTLATDLGALQERITTTKNGSITSVQAVYVPADDLTDPAPATTFSHLDATTVLSRSIAELGIYPAVDPLDSTSRMLTPDIVGAEQYQVARNVQQILQDYKSLQDIIAILGIDELSEQDKLTVARARKVQRFLSQPFAVAEVFTGKPGRFVELEDTIIGFSELLKGNCDDLPEMAFYMVGGLEEVKSKALEMAKQVS

Keywords

Sequence databases

Nucleotide SequenceProtein SequenceMolecule TypeStatus
LN999947
EMBL· GenBank· DDBJ
CZT99516.1
EMBL· GenBank· DDBJ
Genomic DNA

Genome annotation databases

Similar Proteins

Disclaimer

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