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The role of canonical transient receptor potential 7 in B-cell receptor-activated channels (2005)
  • Lievremont,
  • J.P.,
  • Numaga,
  • T.,
  • Vazquez,
  • G.,
  • Lemonnier,
  • L.,
  • Hara,
  • Y.,
  • Mori,
  • E.,
  • Trebak,
  • M.,
  • Moss,
  • S.E.,
  • Bird,
  • G.S.,
  • Mori,
  • Y.,
  • Putney,
  • J.W.,
  • Jr.

Abstract
Phospholipase C signaling stimulates Ca2+ entry across the plasma membrane through multiple mechanisms. Ca2+ store depletion stimulates store-operated Ca2+-selective channels, or alternatively, other phospholipase C-dependent events activate Ca2+-permeable non-selective cation channels. Transient receptor potential 7 (TRPC7) is a non-selective cation channel that can be activated by both mechanisms when ectopically expressed, but the regulation of native TRPC7 channels is not known. We knocked out TRPC7 in DT40 B-cells, which expresses both forms of Ca2+ entry. No difference in the store-operated current I(crac) was detected between TRPC7-/- and wild-type cells. Wild-type cells demonstrated nonstore-operated cation entry and currents in response to activation of the B-cell receptor or protease-activated receptor 2, intracellular dialysis with GTPgammaS, or application of the synthetic diacylglycerol oleyl-acetyl-glycerol. These responses were absent in TRPC7-/- cells but could be restored by transfection with human TRPC7. In conclusion, in B-lymphocytes, TRPC7 appeared to participate in the formation of ion channels that could be activated by phospholipase C-linked receptors. This represents the first demonstration of a physiological function for endogenous TRPC7 channels

Publication details
Download http://www.ucl.ac.uk/research/publications/?action=search&pubid=109478
Repository UCL Research Publications Index (MyOPIA) (United Kingdom)
Keywords Animals, B-Lymphocytes, Barium, Blotting,Northern, Calcium, Calcium Channels, Cations, Cell Line, chemistry, Chickens, Diglycerides, Electrophysiology, Glycerol, Guanosine 5'-O-(3-Thiotriphosphate), Humans, Ion Channels, Ions, metabolism, Models,Genetic, pharmacology, Phospholipase C, physiology, Receptors,Antigen,B-Cell, Signal Transduction, Thapsigargin, Time Factors, Transfection, Transgenes, TRPC Cation Channels
Type JOUR
Relation 35346-35351, 42, 280