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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.
Nature|June 8, 1989
Cell membranes impermeable to NH3D Kikeri, A Sun, M L Zeidel, et al.
Nephrology, Dialysis, Transplantation : Official Publication of the European Dialysis and Transplant Association - European Renal Association|October 1, 1996
The Na-(K)-Cl cotransporter family in the mammalian kidney: molecular identification and function(s)E Delpire, M R Kaplan, M D Plotkin, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 1, 1992
Molecular characterization and nephron distribution of a family of transcripts encoding the pore-forming subunit of Ca2+ channels in the kidneyA S Yu, S C Hebert, B M Brenner, et al.
The American Journal of Physiology|September 1, 1996
Arachidonic acid inhibits activity of cloned renal K+ channel, ROMK1C M Macica, Y Yang, S C Hebert, et al.
Recent Progress in Hormone Research|October 14, 1998
The calcium-sensing receptor (CaR) permits Ca2+ to function as a versatile extracellular first messengerE M Brown, N Chattopadhyay, P M Vassilev, et al.
Journal of the American Society of Nephrology : JASN|October 1, 1996
Gitelman's syndrome (Bartter's variant) maps to the thiazide-sensitive cotransporter gene locus on chromosome 16q13 in a large kindredM R Pollak, V B Delaney, R M Graham, et al.
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.
Brain Research|January 2, 1997
Localization of calcium receptor mRNA in the adult rat central nervous system by in situ hybridizationK V Rogers, C K Dunn, S C Hebert, et al.
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