Joel Nargeot

Affiliations: 
institut de genomique fonctionelle, Montpellier, Occitanie, France 
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"Joel Nargeot"
Mean distance: 15.83 (cluster 11)
 
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Publications

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Baudot M, Mesirca P, Torrente A, et al. (2018) Heart automaticity in mice lacking L-type Cav1.3 and T-type Cav3.1 Ca2+ channels: Insights into the cardiac pacemaker mechanism Archives of Cardiovascular Diseases Supplements. 10: 238
Torrente AG, Mesirca P, Neco P, et al. (2016) L-type Cav1.3 Channels Regulate Ryanodine Receptor-dependent Ca2+ Release during Sino-Atrial Node Pacemaker Activity. Cardiovascular Research
François A, Schüetter N, Laffray S, et al. (2015) The Low-Threshold Calcium Channel Cav3.2 Determines Low-Threshold Mechanoreceptor Function. Cell Reports
Mesirca P, Alig J, Torrente AG, et al. (2014) Cardiac arrhythmia induced by genetic silencing of 'funny' (f) channels is rescued by GIRK4 inactivation. Nature Communications. 5: 4664
Mesirca P, Marger L, Toyoda F, et al. (2013) The G-protein-gated K+ channel, IKACh, is required for regulation of pacemaker activity and recovery of resting heart rate after sympathetic stimulation. The Journal of General Physiology. 142: 113-26
Altier C, Dubel SJ, Barrere C, et al. (2012) AKAP79 modulation of L-type channels involves disruption of intramolecular interactions in the CaV1.2 subunit. Channels (Austin, Tex.). 6: 157-65
Marger F, Gelot A, Alloui A, et al. (2011) T-type calcium channels contribute to colonic hypersensitivity in a rat model of irritable bowel syndrome. Proceedings of the National Academy of Sciences of the United States of America. 108: 11268-73
Marger L, Mesirca P, Alig J, et al. (2011) Functional roles of Ca(v)1.3, Ca(v)3.1 and HCN channels in automaticity of mouse atrioventricular cells: insights into the atrioventricular pacemaker mechanism. Channels (Austin, Tex.). 5: 251-61
Marger L, Mesirca P, Alig J, et al. (2011) Pacemaker activity and ionic currents in mouse atrioventricular node cells. Channels (Austin, Tex.). 5: 241-50
Barbara G, Alloui A, Nargeot J, et al. (2009) T-type calcium channel inhibition underlies the analgesic effects of the endogenous lipoamino acids. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 29: 13106-14
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