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PLoS ONE, ISSN 1932-6203, 10/2017, Volume 12, Issue 10, p. e0186293
The slow delayed-rectifier potassium current (I-Ks) is crucial for human cardiac action potential repolarization. The formation of I-Ks requires co-assembly of... 
INWARD RECTIFIER | MULTIDISCIPLINARY SCIENCES | GATED POTASSIUM CHANNELS | LONG-QT-SYNDROME | RECEPTOR-MEDIATED INHIBITION | ION CHANNELS | I-KS | PHOSPHOINOSITIDE 3-KINASE | CELL REGULATION | K+ CHANNELS | LIVING CELLS | Cricetinae | Cricetulus | Golgi Apparatus - drug effects | Humans | KCNQ1 Potassium Channel - metabolism | Endoplasmic Reticulum - metabolism | Protein Transport - drug effects | Mutation - genetics | Sirolimus - pharmacology | Phosphatidylinositol 4,5-Diphosphate - metabolism | Animals | Potassium Channels, Voltage-Gated - metabolism | Endoplasmic Reticulum - drug effects | Protein Binding - drug effects | HEK293 Cells | Golgi Apparatus - metabolism | Cell Membrane - metabolism | Cell Membrane - drug effects | Genes, Reporter | Protein Multimerization - drug effects | CHO Cells | Ion Channel Gating - drug effects | Physiological aspects | Phosphoinositides | Genetic aspects | Potassium channels | Research | Gene expression | Heart | Phosphates | Residues | Trafficking | Action potential | Phosphatidylinositol 4,5-diphosphate | Kinases | Phosphatase | Cell surface | Proteins | Rodents | Long QT syndrome | Physiology | Potassium channels (voltage-gated) | Protein transport | Dimerization | Heart diseases | Potassium channels (inwardly-rectifying) | C-Terminus | Dentistry | Golgi apparatus | Depletion | KCNQ1 protein | Mutation | Endoplasmic reticulum | Potassium | Binding sites
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