4.4 Article

Ion-Channel Modulators: More Diversity Than Previously Thought

Journal

CHEMBIOCHEM
Volume 12, Issue 12, Pages 1808-1812

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/cbic.201100236

Keywords

allosteric mechanisms; drug action; ion channels; ligand effects; pore modulators

Funding

  1. Belgian Science Policy Interuniversity Attraction Poles (IAP) [P6/31]
  2. Fonds de la Recherche Scientifique [3.4533.09]
  3. University of Liege

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Ion-channel function can be modified in various ways. For example, numerous studies have shown that currents through voltage-gated ion channels are affected by pore block or modification of voltage dependence of activation/inactivation. Recent experiments performed on various ion channels show that allosteric modulation is an important mechanism for affecting channel function. For instance, in K(Ca)2 (formerly SK) channels, the prototypic blocker apamin prevents conduction by an allosteric mechanism, while TRPV1 channels are prevented from closing by a tarantula toxin, DkTx, through an interaction with residues located away from the selectivity filter. The recent evidence, therefore, suggests that in several ion channels, the region around the outer mouth of the pore is rich in binding sites and could be exploited therapeutically. These discoveries also suggest that the pharmacological vocabulary should be adapted to define these various actions.

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