paul groot-kormelink

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"paul groot-kormelink"
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Groot-Kormelink PJ, Ferrand S, Kelley N, et al. (2016) High Throughput Random Mutagenesis and Single Molecule Real Time Sequencing of the Muscle Nicotinic Acetylcholine Receptor. Plos One. 11: e0163129
Miller AT, Dahlberg C, Sandberg ML, et al. (2015) Inhibition of the Inositol Kinase Itpkb Augments Calcium Signaling in Lymphocytes and Reveals a Novel Strategy to Treat Autoimmune Disease. Plos One. 10: e0131071
Coote KJ, Paisley D, Czarnecki S, et al. (2015) NVP-QBE170: an inhaled blocker of the epithelial sodium channel with a reduced potential to induce hyperkalaemia. British Journal of Pharmacology. 172: 2814-26
Bill A, Popa MO, van Diepen MT, et al. (2015) Variomics screen identifies the re-entrant loop of the calcium-activated chloride channel ANO1 that facilitates channel activation. The Journal of Biological Chemistry. 290: 889-903
McPate M, Bhalay G, Beckett M, et al. (2014) The development of automated patch clamp assays for canonical transient receptor potential channels TRPC3, 6, and 7. Assay and Drug Development Technologies. 12: 282-92
Bill A, Rosethorne EM, Kent TC, et al. (2014) High throughput mutagenesis for identification of residues regulating human prostacyclin (hIP) receptor expression and function. Plos One. 9: e97973
Groot-Kormelink PJ, Fawcett L, Wright PD, et al. (2012) Quantitative GPCR and ion channel transcriptomics in primary alveolar macrophages and macrophage surrogates. Bmc Immunology. 13: 57
Krashia P, Moroni M, Broadbent S, et al. (2010) Human α3β4 neuronal nicotinic receptors show different stoichiometry if they are expressed in Xenopus oocytes or mammalian HEK293 cells. Plos One. 5: e13611
Carbone AL, Moroni M, Groot-Kormelink PJ, et al. (2009) Pentameric concatenated (alpha4)(2)(beta2)(3) and (alpha4)(3)(beta2)(2) nicotinic acetylcholine receptors: subunit arrangement determines functional expression. British Journal of Pharmacology. 156: 970-81
Coote KJ, Atherton H, Young A, et al. (2008) The guinea-pig tracheal potential difference as an in vivo model for the study of epithelial sodium channel function in the airways. British Journal of Pharmacology. 155: 1025-33
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