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The Journal of General Physiology|July 30, 2003
External TEA block of shaker K+ channels is coupled to the movement of K+ ions within the selectivity filterJill Thompson, Ted BegenisichThe Journal of General Physiology|February 29, 2012
Selectivity filter gating in large-conductance Ca(2+)-activated K+ channelsJill Thompson, Ted BegenisichThe Journal of General Physiology|May 18, 2005
Two stable, conducting conformations of the selectivity filter in Shaker K+ channelsJill Thompson, Ted BegenisichThe Journal of General Physiology|January 19, 2006
Membrane-delimited inhibition of maxi-K channel activity by the intermediate conductance Ca2+-activated K channelJill Thompson, Ted BegenisichThe Journal of Physiology|April 1, 2003
Functional identification of ion binding sites at the internal end of the pore in Shaker K+ channelsJill Thompson, Ted BegenisichChannels (Austin, Tex.)|July 4, 2009
Mechanistic details of BK channel inhibition by the intermediate conductance, Ca2+-activated K channelJill Thompson, Ted BegenisichChannels (Austin, Tex.)|June 4, 2010
Ca2+-activated K channels in parotid acinar cells: The functional basis for the hyperpolarized activation of BK channelsVictor G Romanenko, Jill Thompson, Ted BegenisichMolecular Pharmacology|October 11, 2011
The LRRC26 protein selectively alters the efficacy of BK channel activatorsJanos Almassy, Ted BegenisichThe Journal of Membrane Biology|January 9, 2007
Pharmacology and surface electrostatics of the K channel outer pore vestibuleClaire C Quinn, Ted BegenisichAmerican Journal of Physiology. Cell Physiology|October 22, 2002
Molecular identification of Ca2+-activated K+ channels in parotid acinar cellsKeith Nehrke, Claire C Quinn, Ted BegenisichPageof 20