Department of Pharmacology and Toxicology, Institute of Pharmacy, Center for Molecular Biosciences Innsbruck, University of Innsbruck, Innsbruck, Austria.
Department of Drug Science, NIS Centre, University of Torino, Torino, Italy.
Elife. 2022 Jul 6;11:e67464. doi: 10.7554/eLife.67464.
In dopaminergic (DA) (SN) neurons Cav2.3 R-type Ca-currents contribute to somatodendritic Ca-oscillations. This activity may contribute to the selective degeneration of these neurons in Parkinson's disease (PD) since Cav2.3-knockout is neuroprotective in a PD mouse model. Here, we show that in tsA-201-cells the membrane-anchored β2-splice variants β2a and β2e are required to stabilize Cav2.3 gating properties allowing sustained Cav2.3 availability during simulated pacemaking and enhanced Ca-currents during bursts. We confirmed the expression of β2a- and β2e-subunit transcripts in the mouse SN and in identified SN DA neurons. Patch-clamp recordings of mouse DA midbrain neurons in culture and SN DA neurons in brain slices revealed SNX-482-sensitive R-type Ca-currents with voltage-dependent gating properties that suggest modulation by β2a- and/or β2e-subunits. Thus, β-subunit alternative splicing may prevent a fraction of Cav2.3 channels from inactivation in continuously active, highly vulnerable SN DA neurons, thereby also supporting Ca signals contributing to the (patho)physiological role of Cav2.3 channels in PD.
在多巴胺能(DA)(SN)神经元中,Cav2.3 R 型钙电流有助于体树突钙振荡。这种活动可能导致这些神经元在帕金森病(PD)中的选择性退化,因为 Cav2.3 敲除在 PD 小鼠模型中具有神经保护作用。在这里,我们表明在 tsA-201 细胞中,膜锚定的 β2 剪接变体 β2a 和 β2e 是稳定 Cav2.3 门控特性所必需的,允许在模拟起搏期间持续存在 Cav2.3 的可用性,并在爆发期间增强 Ca 电流。我们在小鼠 SN 中以及在鉴定的 SN DA 神经元中证实了 β2a-和 β2e-亚基转录本的表达。在培养的小鼠 DA 中脑神经元和脑切片中的 SN DA 神经元上进行的膜片钳记录显示出 SNX-482 敏感的 R 型钙电流,其具有电压依赖性门控特性,表明受 β2a-和/或 β2e-亚基调节。因此,β 亚基的选择性剪接可能防止一部分 Cav2.3 通道在持续活跃、高度脆弱的 SN DA 神经元中失活,从而也支持 Ca 信号在 PD 中 Cav2.3 通道的(病理)生理作用。