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Proceedings of the National Academy of Sciences of the United States of America|August 16, 1994
Regulation of ROMK1 K+ channel activity involves phosphorylation processesC M McNicholas, W Wang, K Ho, et al.The American Journal of Physiology|August 1, 1996
Molecular site for nucleotide binding on an ATP-sensitive renal K+ channel (ROMK2)C M McNicholas, Y Yang, G Giebisch, et al.Annual Review of Physiology|January 1, 1997
Renal K+ channels: structure and functionW Wang, S C Hebert, G GiebischThe American Journal of Physiology|September 8, 1998
Partially active channels produced by PKA site mutation of the cloned renal K+ channel, ROMK2 (kir1.2)G G MacGregor, J Z Xu, C M McNicholas, et al.The American Journal of Physiology|February 1, 1995
Role of Ca2+/CaMK II in Ca(2+)-induced K+ channel inhibition in rat CCD principal cellM Kubokawa, W Wang, C M McNicholas, et al.The American Journal of Physiology|December 9, 1998
pH-dependent modulation of the cloned renal K+ channel, ROMKC M McNicholas, G G MacGregor, L D Islas, et al.Proceedings of the National Academy of Sciences of the United States of America|July 23, 1996
Sensitivity of a renal K+ channel (ROMK2) to the inhibitory sulfonylurea compound glibenclamide is enhanced by coexpression with the ATP-binding cassette transporter cystic fibrosis transmembrane regulatorC M McNicholas, W B Guggino, E M Schwiebert, et al.The American Journal of Physiology|September 1, 1995
Regulation of ATP-sensitive K+ channel by membrane-bound protein phosphatases in rat principal tubule cellM Kubokawa, C M McNicholas, M A Higgins, et al.The American Journal of Physiology|December 31, 1997
A functional CFTR-NBF1 is required for ROMK2-CFTR interactionC M McNicholas, M W Nason, W B Guggino, et al.The American Journal of Physiology|May 1, 1994
A novel approach allows identification of K channels in the lateral membrane of rat CCDW H Wang, C M McNicholas, A S Segal, et al.Pageof 968