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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 General Physiology|September 15, 2010
Characterization of the PCMBS-dependent modification of KCa3.1 channel gatingMark A Bailey, Michael Grabe, 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 DevorFASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|August 11, 2011
Role of ubiquitylation and USP8-dependent deubiquitylation in the endocytosis and lysosomal targeting of plasma membrane KCa3.1Corina M Balut, Christian M Loch, 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 DevorAmerican Journal of Physiology. Cell Physiology|September 5, 2022
KCa3.1 potentiation stimulates Cl<sup>-</sup> secretion in F508del and G551D CFTR-corrected primary human bronchial epithelial cellsDaniel C Devor, Matthew D Green, Robert J BridgesThe 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 DevorFuture Medicinal Chemistry|July 3, 2010
Immunofluorescence-based assay to identify modulators of the number of plasma membrane KCa3.1 channelsCorina M Balut, Yajuan Gao, Cliff Luke, et al.Frontiers in Physiology|August 4, 2017
Modulation of Retrograde Trafficking of KCa3.1 in a Polarized EpitheliumBob Shih-Liang Lee, Daniel C Devor, Kirk L HamiltonAmerican Journal of Physiology. Cell Physiology|December 8, 2006
The Ca(2+)-activated K(+) channel KCa3.1 compartmentalizes in the immunological synapse of human T lymphocytesStella A Nicolaou, Lisa Neumeier, Youqing Peng, et al.Pageof 3