Monteil Arnaud, Chausson Patrick, Boutourlinsky Katia, Mezghrani Alexandre, Huc-Brandt Sylvaine, Blesneac Iulia, Bidaud Isabelle, Lemmers Céline, Leresche Nathalie, Lambert Régis C, Lory Philippe
From the Université de Montpellier, CNRS UMR 5203, Département de Physiologie, Institut de Génomique Fonctionnelle, Montpellier, F-34094 France, INSERM, U1191, Montpellier, F-34094 France, Plateforme de Vectorologie, Biocampus Montpellier CNRS UMS 3426, INSERM US009, Montpellier, F-34094 France, LabEx "Ion Channel Science and Therapeutics," Montpellier, F-34094 France.
Sorbonne Universités, Université Pierre et Marie Curie Université Paris 06, UM 119, Neuroscience Paris Seine (NPS), Paris F-75005, France, CNRS UMR 8246, NPS, Paris F-75005, France, and INSERM, U1130, NPS, Paris F-75005, France.
J Biol Chem. 2015 Jun 26;290(26):16168-76. doi: 10.1074/jbc.M114.634261. Epub 2015 Apr 30.
Voltage-dependent calcium channels (Cav) of the T-type family (Cav3.1, Cav3.2, and Cav3.3) are activated by low threshold membrane depolarization and contribute greatly to neuronal network excitability. Enhanced T-type channel activity, especially Cav3.2, contributes to disease states, including absence epilepsy. Interestingly, the intracellular loop connecting domains I and II (I-II loop) of Cav3.2 channels is implicated in the control of both surface expression and channel gating, indicating that this I-II loop plays an important regulatory role in T-type current. Here we describe that co-expression of this I-II loop or its proximal region (Δ1-Cav3.2; Ser(423)-Pro(542)) together with recombinant full-length Cav3.2 channel inhibited T-type current without affecting channel expression and membrane incorporation. Similar T-type current inhibition was obtained in NG 108-15 neuroblastoma cells that constitutively express Cav3.2 channels. Of interest, Δ1-Cav3.2 inhibited both Cav3.2 and Cav3.1 but not Cav3.3 currents. Efficacy of Δ1-Cav3.2 to inhibit native T-type channels was assessed in thalamic neurons using viral transduction. We describe that T-type current was significantly inhibited in the ventrobasal neurons that express Cav3.1, whereas in nucleus reticularis thalami neurons that express Cav3.2 and Cav3.3 channels, only the fast inactivating T-type current (Cav3.2 component) was significantly inhibited. Altogether, these data describe a new strategy to differentially inhibit Cav3 isoforms of the T-type calcium channels.
T型家族的电压依赖性钙通道(Cav)(Cav3.1、Cav3.2和Cav3.3)可被低阈值膜去极化激活,并对神经网络兴奋性有很大贡献。增强的T型通道活性,尤其是Cav3.2,与包括失神癫痫在内的疾病状态有关。有趣的是,Cav3.2通道连接结构域I和II的细胞内环(I-II环)与表面表达和通道门控的控制有关,表明该I-II环在T型电流中起重要调节作用。在此我们描述,该I-II环或其近端区域(Δ1-Cav3.2;Ser(423)-Pro(542))与重组全长Cav3.2通道共表达可抑制T型电流,而不影响通道表达和膜整合。在组成性表达Cav3.2通道的NG 108-15神经母细胞瘤细胞中也获得了类似的T型电流抑制。有趣的是,Δ1-Cav3.2抑制Cav3.2和Cav3.1电流,但不抑制Cav3.3电流。使用病毒转导在丘脑神经元中评估了Δ1-Cav3.2抑制天然T型通道的效果。我们描述,在表达Cav3.1的腹侧基底核神经元中T型电流被显著抑制,而在表达Cav3.2和Cav3.3通道的丘脑网状核神经元中,只有快速失活的T型电流(Cav3.2成分)被显著抑制。总之,这些数据描述了一种差异性抑制T型钙通道Cav3亚型的新策略。