• Title of article

    Function, structure and regulation of the vacuolar (H+)-ATPases

  • Author/Authors

    Jefferies، نويسنده , , Kevin C. and Cipriano، نويسنده , , Daniel J. and Forgac، نويسنده , , Michael، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2008
  • Pages
    10
  • From page
    33
  • To page
    42
  • Abstract
    The vacuolar ATPases (or V-ATPases) are ATP-driven proton pumps that function to both acidify intracellular compartments and to transport protons across the plasma membrane. Intracellular V-ATPases function in such normal cellular processes as receptor-mediated endocytosis, intracellular membrane traffic, prohormone processing, protein degradation and neurotransmitter uptake, as well as in disease processes, including infection by influenza and other viruses and killing of cells by anthrax and diphtheria toxin. Plasma membrane V-ATPases are important in such physiological processes as urinary acidification, bone resorption and sperm maturation as well as in human diseases, including osteopetrosis, renal tubular acidosis and tumor metastasis. V-ATPases are large multi-subunit complexes composed of a peripheral domain (V1) responsible for hydrolysis of ATP and an integral domain (V0) that carries out proton transport. Proton transport is coupled to ATP hydrolysis by a rotary mechanism. V-ATPase activity is regulated in vivo using a number of mechanisms, including reversible dissociation of the V1 and V0 domains, changes in coupling efficiency of proton transport and ATP hydrolysis and changes in pump density through reversible fusion of V-ATPase containing vesicles. V-ATPases are emerging as potential drug targets in treating a number of human diseases including osteoporosis and cancer.
  • Keywords
    Acidification of intracellular compartments , Urinary acidification , pH regulation , bone resorption , viral entry , V-ATPase structure and mechanism , V-ATPase regulation , Proton transport across the plasma membrane , V-ATPase
  • Journal title
    Archives of Biochemistry and Biophysics
  • Serial Year
    2008
  • Journal title
    Archives of Biochemistry and Biophysics
  • Record number

    1629599