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American Journal of Physiology. Renal Physiology|February 17, 2012
Basolateral membrane K+ channels in renal epithelial cellsKirk L Hamilton, Daniel C DevorThe Journal of Biological Chemistry|March 1, 2003
Molecular localization of the inhibitory arachidonic acid binding site to the pore of hIK1Kirk L Hamilton, Colin A Syme, Daniel C DevorChemmedchem|August 14, 2012
Trafficking of intermediate (KCa3.1) and small (KCa2.x) conductance, Ca(2+)-activated K(+) channels: a novel target for medicinal chemistry efforts?Corina M Balut, Kirk L Hamilton, Daniel C DevorThe Journal of Biological Chemistry|September 2, 2005
Role of an S4-S5 linker lysine in the trafficking of the Ca(2+)-activated K(+) channels IK1 and SK3Heather M Jones, Kirk L Hamilton, Daniel C DevorFrontiers in Physiology|August 4, 2017
Modulation of Retrograde Trafficking of KCa3.1 in a Polarized EpitheliumBob Shih-Liang Lee, Daniel C Devor, Kirk L HamiltonPlos One|March 18, 2014
Anterograde trafficking of KCa3.1 in polarized epithelia is Rab1- and Rab8-dependent and recycling endosome-independentClaudia A Bertuccio, Shih-Liang Lee, Guangyu Wu, et al.American Journal of Physiology. Cell Physiology|December 3, 2010
Calcium-activated K+ channels increase cell proliferation independent of K+ conductanceJoanne E Millership, Daniel C Devor, Kirk L Hamilton, et al.Plos One|May 17, 2018
Plasma membrane insertion of KCa2.3 (SK3) is dependent upon the SNARE proteins, syntaxin-4 and SNAP23Claudia A Bertuccio, Tony T Wang, Kirk L Hamilton, et al.Frontiers in Physiology|July 14, 2022
Role of SNARE Proteins in the Insertion of KCa3.1 in the Plasma Membrane of a Polarized EpitheliumRachel E Farquhar, Tanya T Cheung, Matthew J E Logue, et al.The Journal of Biological Chemistry|February 3, 2004
Role of the NH2 terminus in the assembly and trafficking of the intermediate conductance Ca2+-activated K+ channel hIK1Heather M Jones, Kirk L Hamilton, Glenn D Papworth, et al.Pageof 5