Chaudhuri Dipayan, Alseikhan Badr A, Chang Siao Yun, Soong Tuck Wah, Yue David T
Department of Neuroscience, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
J Neurosci. 2005 Sep 7;25(36):8282-94. doi: 10.1523/JNEUROSCI.2253-05.2005.
P-type (CaV2.1) Ca2+ channels are a central conduit of neuronal Ca2+ entry, so their Ca2+ feedback regulation promises widespread neurobiological impact. Heterologous expression of recombinant CaV2.1 channels demonstrates that the Ca2+ sensor calmodulin can trigger Ca2+-dependent facilitation (CDF) of channel opening. This facilitation occurs when local Ca2+ influx through individual channels selectively activates the C-terminal lobe of calmodulin. In neurons, however, such calmodulin-mediated processes have yet to be detected, and CDF of native P-type current has thus far appeared different, arguably triggered by other Ca2+ sensing molecules. Here, in cerebellar Purkinje somata abundant with prototypic P-type channels, we find that the C-terminal lobe of calmodulin does produce CDF, and such facilitation augments Ca2+ entry during stimulation by repetitive action-potential and complex-spike waveforms. Beyond recapitulating key features of recombinant channels, these neurons exhibit an additional modulatory dimension: developmental upregulation of CDF during postnatal week 2. This phenomenon reflects increasing somatic expression of CaV2.1 splice variants that manifest CDF and progressive dendritic targeting of variants lacking CDF. Calmodulin-triggered facilitation is thus fundamental to native CaV2.1 and rapidly enhanced during early development.
P型(CaV2.1)钙离子通道是神经元钙离子内流的主要途径,因此其钙离子反馈调节有望对神经生物学产生广泛影响。重组CaV2.1通道的异源表达表明,钙离子传感器钙调蛋白可触发通道开放的钙离子依赖性易化(CDF)。当局部钙离子通过单个通道内流选择性激活钙调蛋白的C末端叶时,就会发生这种易化。然而,在神经元中,尚未检测到这种钙调蛋白介导的过程,并且天然P型电流的CDF迄今为止表现有所不同,可以说是由其他钙离子传感分子触发的。在这里,在富含典型P型通道的小脑浦肯野细胞胞体中,我们发现钙调蛋白的C末端叶确实会产生CDF,并且这种易化在重复动作电位和复合尖峰波形刺激期间会增强钙离子内流。除了重现重组通道的关键特征外,这些神经元还表现出另一个调节维度:出生后第2周CDF的发育上调。这种现象反映了表现出CDF的CaV2.1剪接变体的体细胞表达增加,以及缺乏CDF的变体向树突的逐步靶向。因此,钙调蛋白触发的易化是天然CaV2.1的基础,并在早期发育过程中迅速增强。