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Physiology (Bethesda, Md.)|April 17, 2012
Electrically silent Kv subunits: their molecular and functional characteristicsElke Bocksteins, Dirk J SnydersScientific Reports|February 1, 2017
Independent movement of the voltage sensors in K<sub>V</sub>2.1/K<sub>V</sub>6.4 heterotetramersElke Bocksteins, Dirk J Snyders, Miguel HolmgrenPlos One|May 23, 2012
The electrically silent Kv6.4 subunit confers hyperpolarized gating charge movement in Kv2.1/Kv6.4 heterotetrameric channelsElke Bocksteins, Alain J Labro, Dirk J Snyders, et al.Plos One|October 28, 2015
Modulation of Closed-State Inactivation in Kv2.1/Kv6.4 Heterotetramers as Mechanism for 4-AP Induced PotentiationJeroen I Stas, Elke Bocksteins, Alain J Labro, et al.American Journal of Physiology. Cell Physiology|June 8, 2012
Kv3 channels contribute to the delayed rectifier current in small cultured mouse dorsal root ganglion neuronsElke Bocksteins, Gerda Van de Vijver, Pierre-Paul Van Bogaert, et al.Scientific Reports|October 14, 2016
The anticonvulsant retigabine suppresses neuronal K<sub>V</sub>2-mediated currentsJeroen I Stas, Elke Bocksteins, Camilla S Jensen, et al.Plos One|June 6, 2014
The subfamily-specific interaction between Kv2.1 and Kv6.4 subunits is determined by interactions between the N- and C-terminiElke Bocksteins, Evy Mayeur, Abbi Van Tilborg, et al.Physiological Reports|April 2, 2016
The contribution of Kv2.2-mediated currents decreases during the postnatal development of mouse dorsal root ganglion neuronsGlenn Regnier, Elke Bocksteins, Gerda Van de Vijver, et al.The Journal of Biological Chemistry|September 1, 2009
Conserved negative charges in the N-terminal tetramerization domain mediate efficient assembly of Kv2.1 and Kv2.1/Kv6.4 channelsElke Bocksteins, Alain J Labro, Evy Mayeur, et al.American Journal of Physiology. Cell Physiology|April 10, 2009
Kv2.1 and silent Kv subunits underlie the delayed rectifier K+ current in cultured small mouse DRG neuronsElke Bocksteins, Adam L Raes, Gerda Van de Vijver, et al.Pageof 6