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Cell Research|April 11, 2024
Structural basis for human Cav3.2 inhibition by selective antagonistsJian Huang, Xiao Fan, Xueqin Jin, et al.
Science Advances|June 29, 2022
The impact of C-tactile low-threshold mechanoreceptors on affective touch and social interactions in miceDamien Huzard, Miquel Martin, François Maingret, et al.
British Journal of Pharmacology|February 18, 2024
Voltage tunes mGlu5 receptor function, impacting synaptic transmissionMarin Boutonnet, Camille Carpena, Nathalie Bouquier, et al.
Scientific Reports|November 4, 2020
Concomitant genetic ablation of L-type Cav1.3 (α1D) and T-type Cav3.1 (α1G) Ca2+ channels disrupts heart automaticityMatthias Baudot, Eleonora Torre, Isabelle Bidaud, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|April 25, 2008
A destructive interaction mechanism accounts for dominant-negative effects of misfolded mutants of voltage-gated calcium channelsAlexandre Mezghrani, Arnaud Monteil, Katrin Watschinger, et al.
Neurobiology of Disease|April 29, 2014
RNAi silencing of P/Q-type calcium channels in Purkinje neurons of adult mouse leads to episodic ataxia type 2Julie Salvi, Federica Bertaso, Anne-Laure Mausset-Bonnefont, et al.
Biochemical Pharmacology|April 26, 2017
T-type voltage gated calcium channels are involved in endothelium-dependent relaxation of mice pulmonary arteryGuillaume Gilbert, Arnaud Courtois, Mathilde Dubois, et al.
Brain : a Journal of Neurology|June 8, 2018
De novo mutation screening in childhood-onset cerebellar atrophy identifies gain-of-function mutations in the CACNA1G calcium channel geneJean Chemin, Karine Siquier-Pernet, Michaël Nicouleau, et al.
Plos Biology|November 4, 2025
Zebrafish fast muscle contractions avoid the mammalian requirement for voltage-gated Na+ channelsLéa Demesmay, Romane Idoux, Christine Berthier, et al.
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