Lim C, Dudev T (2016). "Roles and Transport of Sodium and Potassium in Plants". In Sigel A, Sigel H, Sigel RK (eds.). The Alkali Metal Ions: Their Role for Life. Metal Ions in Life Sciences. Vol. 16. Springer. pp. 325–347. doi:10.1007/978-3-319-21756-7_9. ISBN978-3-319-21755-0. PMID26860305. {{cite book}}: |journal= ignored (help)
Jin W, Lu Z (September 1998). "A novel high-affinity inhibitor for inward-rectifier K+ channels". Biochemistry. 37 (38): 13291–13299. doi:10.1021/bi981178p. PMID9748337.
Meadows HJ, Randall AD (March 2001). "Functional characterisation of human TASK-3, an acid-sensitive two-pore domain potassium channel". Neuropharmacology. 40 (4): 551–559. doi:10.1016/S0028-3908(00)00189-1. PMID11249964. S2CID20181576.
Kindler CH, Paul M, Zou H, Liu C, Winegar BD, Gray AT, Yost CS (July 2003). "Amide local anesthetics potently inhibit the human tandem pore domain background K+ channel TASK-2 (KCNK5)". The Journal of Pharmacology and Experimental Therapeutics. 306 (1): 84–92. doi:10.1124/jpet.103.049809. PMID12660311. S2CID1621972.
Meadows HJ, Benham CD, Cairns W, Gloger I, Jennings C, Medhurst AD, et al. (April 2000). "Cloning, localisation and functional expression of the human orthologue of the TREK-1 potassium channel". Pflügers Archiv. 439 (6): 714–722. doi:10.1007/s004240050997. PMID10784345.
Doyle DA, Morais Cabral J, Pfuetzner RA, Kuo A, Gulbis JM, Cohen SL, et al. (April 1998). "The structure of the potassium channel: molecular basis of K+ conduction and selectivity". Science. 280 (5360): 69–77. Bibcode:1998Sci...280...69D. doi:10.1126/science.280.5360.69. PMID9525859.
Hellgren M, Sandberg L, Edholm O (March 2006). "A comparison between two prokaryotic potassium channels (KirBac1.1 and KcsA) in a molecular dynamics (MD) simulation study". Biophysical Chemistry. 120 (1): 1–9. doi:10.1016/j.bpc.2005.10.002. PMID16253415.
Doyle DA, Morais Cabral J, Pfuetzner RA, Kuo A, Gulbis JM, Cohen SL, et al. (April 1998). "The structure of the potassium channel: molecular basis of K+ conduction and selectivity". Science. 280 (5360): 69–77. Bibcode:1998Sci...280...69D. doi:10.1126/science.280.5360.69. PMID9525859.
Lim C, Dudev T (2016). "Roles and Transport of Sodium and Potassium in Plants". In Sigel A, Sigel H, Sigel RK (eds.). The Alkali Metal Ions: Their Role for Life. Metal Ions in Life Sciences. Vol. 16. Springer. pp. 325–347. doi:10.1007/978-3-319-21756-7_9. ISBN978-3-319-21755-0. PMID26860305. {{cite book}}: |journal= ignored (help)
Jin W, Lu Z (September 1998). "A novel high-affinity inhibitor for inward-rectifier K+ channels". Biochemistry. 37 (38): 13291–13299. doi:10.1021/bi981178p. PMID9748337.
Meadows HJ, Randall AD (March 2001). "Functional characterisation of human TASK-3, an acid-sensitive two-pore domain potassium channel". Neuropharmacology. 40 (4): 551–559. doi:10.1016/S0028-3908(00)00189-1. PMID11249964. S2CID20181576.
Kindler CH, Paul M, Zou H, Liu C, Winegar BD, Gray AT, Yost CS (July 2003). "Amide local anesthetics potently inhibit the human tandem pore domain background K+ channel TASK-2 (KCNK5)". The Journal of Pharmacology and Experimental Therapeutics. 306 (1): 84–92. doi:10.1124/jpet.103.049809. PMID12660311. S2CID1621972.
Meadows HJ, Benham CD, Cairns W, Gloger I, Jennings C, Medhurst AD, et al. (April 2000). "Cloning, localisation and functional expression of the human orthologue of the TREK-1 potassium channel". Pflügers Archiv. 439 (6): 714–722. doi:10.1007/s004240050997. PMID10784345.
Doyle DA, Morais Cabral J, Pfuetzner RA, Kuo A, Gulbis JM, Cohen SL, et al. (April 1998). "The structure of the potassium channel: molecular basis of K+ conduction and selectivity". Science. 280 (5360): 69–77. Bibcode:1998Sci...280...69D. doi:10.1126/science.280.5360.69. PMID9525859.
Hellgren M, Sandberg L, Edholm O (March 2006). "A comparison between two prokaryotic potassium channels (KirBac1.1 and KcsA) in a molecular dynamics (MD) simulation study". Biophysical Chemistry. 120 (1): 1–9. doi:10.1016/j.bpc.2005.10.002. PMID16253415.
Meadows HJ, Randall AD (March 2001). "Functional characterisation of human TASK-3, an acid-sensitive two-pore domain potassium channel". Neuropharmacology. 40 (4): 551–559. doi:10.1016/S0028-3908(00)00189-1. PMID11249964. S2CID20181576.
Kindler CH, Paul M, Zou H, Liu C, Winegar BD, Gray AT, Yost CS (July 2003). "Amide local anesthetics potently inhibit the human tandem pore domain background K+ channel TASK-2 (KCNK5)". The Journal of Pharmacology and Experimental Therapeutics. 306 (1): 84–92. doi:10.1124/jpet.103.049809. PMID12660311. S2CID1621972.