Details for: Atp5pb

Gene ID: 11950

Symbol: Atp5pb

Ensembl ID: ENSMUSG00000000563

Description: ATP synthase peripheral stalk-membrane subunit b

Associated with

  • Cristae formation
    (R-MMU-8949613)
  • Formation of atp by chemiosmotic coupling
    (R-MMU-163210)
  • Metabolism
    (R-MMU-1430728)
  • Mitochondrial biogenesis
    (R-MMU-1592230)
  • Organelle biogenesis and maintenance
    (R-MMU-1852241)
  • Respiratory electron transport, atp synthesis by chemiosmotic coupling, and heat production by uncoupling proteins.
    (R-MMU-163200)
  • The citric acid (tca) cycle and respiratory electron transport
    (R-MMU-1428517)
  • Atp hydrolysis activity
    (GO:0016887)
  • Membrane
    (GO:0016020)
  • Mitochondrial inner membrane
    (GO:0005743)
  • Mitochondrial proton-transporting atp synthase complex
    (GO:0005753)
  • Mitochondrial proton-transporting atp synthase complex, coupling factor f(o)
    (GO:0000276)
  • Mitochondrion
    (GO:0005739)
  • Monoatomic ion transport
    (GO:0006811)
  • Myelin sheath
    (GO:0043209)
  • Protein-containing complex binding
    (GO:0044877)
  • Proton-transporting atp synthase activity, rotational mechanism
    (GO:0046933)
  • Proton-transporting atp synthase complex, coupling factor f(o)
    (GO:0045263)
  • Proton motive force-driven atp synthesis
    (GO:0015986)
  • Proton motive force-driven mitochondrial atp synthesis
    (GO:0042776)
  • Proton transmembrane transport
    (GO:1902600)
  • Proton transmembrane transporter activity
    (GO:0015078)

Other Information

Genular Protein ID: 1546096187

Symbol: AT5F1_MOUSE

Name: ATP synthase subunit b

UniProtKB Accession Codes:

Database IDs:

Citations:

PubMed ID: 16141072

Title: The transcriptional landscape of the mammalian genome.

PubMed ID: 16141072

DOI: 10.1126/science.1112014

PubMed ID: 21183079

Title: A tissue-specific atlas of mouse protein phosphorylation and expression.

PubMed ID: 21183079

DOI: 10.1016/j.cell.2010.12.001

PubMed ID: 23806337

Title: SIRT5-mediated lysine desuccinylation impacts diverse metabolic pathways.

PubMed ID: 23806337

DOI: 10.1016/j.molcel.2013.06.001

PubMed ID: 23576753

Title: Label-free quantitative proteomics of the lysine acetylome in mitochondria identifies substrates of SIRT3 in metabolic pathways.

PubMed ID: 23576753

DOI: 10.1073/pnas.1302961110

Sequence Information:

  • Length: 256
  • Mass: 28949
  • Checksum: 6B385AE4DE6CB784
  • Sequence:
  • MLSRVVLSAA ATAAPCLKNA AALGPGVLQA TRAFHTGQPR LAPLPPLPEY GGKVRLGLIP 
    EEFFQFLYPK TGVTGPYVLG TGLSLYFLSK EIYVITPETF STISVVGLIV YVIKKYGASF 
    GEFIDKLNEE KIAQLEEVKQ SSMKQIQDAI DMEKAQQALV QKRHYLFDVQ RNNIALALEV 
    TYRERLHKAY KEVKNRLDYH ISVQNMMRRK EEEHMIDWVE KHVVKSISVQ QEKETIAKCI 
    EDLKLLAKKA QAQPIM

Database document:

This is a preview of the gene's schema. Only a few entries are kept for 'singleCellExpressions,' 'mRNAExpressions,' and other large data arrays for visualization purposes. You can zoom in with the mouse wheel for a closer view, and the text will adjust automatically if necessary. For the full schema, download it here.