Tetraspanin-13 modulates voltage-gated CaV2.2 Ca2+ channels

Integration of voltage-gated Ca 2+ channels in a network of protein-interactions is a crucial requirement for proper regulation of channel activity. In this study, we took advantage of the specific properties of the yeast split-ubiquitin system to search for and characterize so far unknown interacti...

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Veröffentlicht in:Scientific reports 2013-05, Vol.3 (1), p.1777-1777, Article 1777
Hauptverfasser: Mallmann, Robert T., Wilmes, Thomas, Lichvarova, Lucia, Bührer, Anja, Lohmüller, Barbara, Castonguay, Jan, Lacinova, Lubica, Klugbauer, Norbert
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Sprache:eng
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Zusammenfassung:Integration of voltage-gated Ca 2+ channels in a network of protein-interactions is a crucial requirement for proper regulation of channel activity. In this study, we took advantage of the specific properties of the yeast split-ubiquitin system to search for and characterize so far unknown interaction partners of Ca V 2 Ca 2+ channels. We identified tetraspanin-13 (TSPAN-13) as an interaction partner of the α 1 subunit of N-type Ca V 2.2, but not of P/Q-type Ca V 2.1 or L- and T-type Ca 2+ channels. Interaction could be located between domain IV of Ca V 2.2 and transmembrane segments S1 and S2 of TSPAN-13. Electrophysiological analysis revealed that TSPAN-13 specifically modulates the efficiency of coupling between voltage sensor activation and pore opening of the channel and accelerates the voltage-dependent activation and inactivation of the Ba 2+ current through Ca V 2.2. These data indicate that TSPAN-13 might regulate Ca V 2.2 Ca 2+ channel activity in defined synaptic membrane compartments and thereby influences transmitter release.
ISSN:2045-2322
2045-2322
DOI:10.1038/srep01777