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Pannexin membrane channels are mechanosensitive conduits for ATP

FEBS Letters · 2004 · Vol. 572(1-3) · pp. 65–68
Li BaoSilviu LocoveiGerhard Dahl

Abstract

Intercellular calcium wave propagation initiated by mechanical stress is a phenomenon found in nearly all cell types. The waves utilize two pathways: transfer of InsP3 directly from cell to cell through gap junction channels and release of ATP onto extracellular purinergic receptors. The conduit for ATP has remained elusive and both a vesicular and a channel mediated release have been considered. Here, we describe the properties of single pannexin 1 channels. They have a wide expression spectrum, they are of large conductance and permeant for ATP, and they are mechanosensitive. Hence, pannexins are candidates for the release of ATP to the extracellular space upon mechanical stress.

Connexins and lens biologyNeuroscience of respiration and sleepBiochemical effects in animalsMechanosensitive channelsPannexinExtracellularPurinergic receptorBiophysicsCell biologyChemistryGap junctionIntracellularAdenosine triphosphate

MeSH terms

AnimalsHumansIon ChannelsMembrane PotentialsOocytesRecombinant ProteinsTransfectionXenopusGap JunctionsPatch-Clamp Techniques
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References
Improved patch-clamp techniques for high-resolution current recording from cells and cell-free membrane patches
Pflügers Archiv - European Journal of Physiology · 1981 · 18,474 citations
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