Inserm U-1051, Montpellier, F34000, France.
Biochem J. 2012 Jan 1;441(1):463-71. doi: 10.1042/BJ20111147.
The T-type Ca2+ channel Cav3.2 is expressed in nociceptive and mechanosensitive sensory neurons. The mechanosensitive D-hair (down-hair) neurons, which innervate hair follicles, are characterized by a large-amplitude Cav3.2 T-current involved in the amplification of slow-moving stimuli. The molecules and signalling pathways that regulate T-current expression in mechanoreceptors are unknown. In the present study, we investigated the effects of NT-4 (neurotrophin-4) on Cav3.2 T-current expression in D-hair neurons in vitro. Interruption of the supply of NT-4 with peripheral nerve axotomy induced a non-transcriptional decrease in the T-current amplitude of fluorogold-labelled axotomized sensory neurons. The T-current amplitude was restored by incubation with NT-4. Deletion of NT-4 through genetic ablation resulted in a similar selective loss of the large-amplitude T-current in NT-4-/- sensory neurons, which was rescued by the addition of NT-4. NT-4 had no effect on the T-current in Cav3.2-/- D-hair neurons. Neither the biophysical properties of the T-current nor the transcript expression of Cav3.2 were modified by NT-4. Pharmacological screening of signalling pathways activated under the high-affinity NT-4 receptor TrkB (tropomyosin receptor kinase B) identified a role for PI3K (phosphoinositide 3-kinase) in the potentiation of T-current. The results of the present study demonstrate the post-transcriptional up-regulation of the Cav3.2 T-current through TrkB activation and identify NT-4 as a target-derived factor that regulates the mechanosensitive function of D-hair neurons through expression of the T-current.
T 型钙通道 Cav3.2 表达于伤害感受和机械敏感感觉神经元。机械敏感的 D 毛(下毛)神经元支配毛囊,其特征是涉及慢移刺激放大的大振幅 Cav3.2 T 电流。调节机械感受器中 T 电流表达的分子和信号通路尚不清楚。在本研究中,我们研究了 NT-4(神经营养素-4)对体外 D 毛神经元 Cav3.2 T 电流表达的影响。外周神经轴突切断中断 NT-4 的供应诱导荧光金标记的轴突切断感觉神经元的 T 电流幅度的非转录性降低。用 NT-4 孵育可恢复 T 电流幅度。通过基因敲除消除 NT-4 导致 NT-4/-感觉神经元中大振幅 T 电流的类似选择性丧失,而 NT-4 的添加可挽救该电流。NT-4 对 Cav3.2-/-D 毛神经元的 T 电流没有影响。NT-4 既不影响 T 电流的生物物理特性,也不影响 Cav3.2 的转录表达。高亲和力 NT-4 受体 TrkB(原肌球蛋白受体激酶 B)激活的信号通路的药理学筛选鉴定了 PI3K(磷酸肌醇 3-激酶)在 T 电流增强中的作用。本研究的结果表明,通过 TrkB 激活对 Cav3.2 T 电流进行转录后上调,并确定 NT-4 作为一种靶源性因子,通过表达 T 电流来调节 D 毛神经元的机械敏感功能。