bioRxiv · 10.1101/2021.02.10.430224
Alternative splicing of auxiliary β2-subunits stabilizes Cav2.3 Ca2+ channel activity in continuously active midbrain dopamine neurons
Abstract
In dopaminergic (DA) substantia nigra (SN) neurons Cav2.3 R-type Ca2+-currents contribute to somatodendritic Ca2+-oscillations. These may contribute to the selective degeneration of these neurons in Parkinsons disease (PD) since Cav2.3-knockout is neuroprotective in a PD mouse model. However, the typical Cav2.3 gating would predict complete channel inactivation during SN DA neuronal firing. Here we show that in tsA-201-cells the membrane-anchored {beta}2-splice variants {beta}2a and {beta}2e stabilize Cav2.3 gating properties allowing sustained Cav2.3 availability during simulated pacemaking and enhanced Ca2+-currents during bursts. We confirmed the expression of {beta}2a and {beta}2e-subunits in the SN and identified SN DA neurons. Patch-clamp recordings of SN DA neurons in mouse brain slices revealed R-type Ca2+-currents similar to {beta}2a- or {beta}2e-stabilized Cav2.3-currents and recordings in cultured murine DA neurons confirmed their activity during pacemaking. Taken together, our data support an important (patho)physiological role of {beta}-subunit alternative splicing for Cav2.3 Ca2+-signaling in highly vulnerable SN DA neurons.
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Siller, A., Hofer, N. T., Tomagra, G., Wiederspohn, N., Hess, S., Benkert, J., Gaifullina, A., Spaich, D., Duda, J., Poetschke, C., Vilusic, K., Fritz, E. M., Schneider, T., Kloppenburg, P., Liss, B., Carabelli, V., Carbone, E., Ortner, N. J., Striessnig, J.. 2021-02-10. Alternative splicing of auxiliary β2-subunits stabilizes Cav2.3 Ca2+ channel activity in continuously active midbrain dopamine neurons. https://doi.org/10.1101/2021.02.10.430224
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