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The Journal of Physiology|December 1, 1989
Nucleotide modulation of the activity of rat heart ATP-sensitive K+ channels in isolated membrane patchesW J Lederer, C G NicholsDiabetes|January 20, 2023
Glucokinase Inhibition: A Novel Treatment for Diabetes?Maria S Remedi, Colin G NicholsThe Journal of General Physiology|December 16, 2022
Seeing spermine blocking of K+ ion movement through inward rectifier Kir2.2 channelsSun-Joo Lee, Colin G NicholsThe Journal of Biological Chemistry|October 19, 2018
Polyamines and potassium channels: A 25-year romanceColin G Nichols, Sun-Joo LeeMsystems|December 16, 2024
Clade-specific long-read sequencing increases the accuracy and specificity of the gyrB phylogenetic marker geneRobert G Nichols, Emily R DavenportJournal of Cardiovascular Electrophysiology|November 9, 2001
Sarcolemmal K(ATP) channels in the heart: molecular mechanisms brought to light, but physiologic consequences still in the darkT P Flagg, C G NicholsHuman Genetics|November 22, 2020
The relationship between the gut microbiome and host gene expression: a reviewRobert G Nichols, Emily R DavenportThe Journal of Nursing Administration|May 1, 1980
Do nurses really use standard care plans?E G Nichols, R E BarstowThe Journal of Biological Chemistry|March 7, 1998
Independent trafficking of KATP channel subunits to the plasma membraneE N Makhina, C G NicholsThe Journal of General Physiology|November 26, 2003
Ligand-induced closure of inward rectifier Kir6.2 channels traps spermine in the poreL Revell Phillips, Colin G NicholsPageof 60