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Compensatory Regulation of Cav2.1 Ca2+ Channels in Cerebellar Purkinje Neurons Lacking Parvalbumin and Calbindin D-28k

机译:缺乏小白蛋白和钙结合蛋白D-28k的小脑Purkinje神经元中Cav2.1 Ca2 +通道的补偿性调节

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摘要

Cav2.1 channels regulate Ca2+ signaling and excitability of cerebellar Purkinje neurons. These channels undergo a dual feedback regulation by incoming Ca2+ ions, Ca2+-dependent facilitation and inactivation. Endogenous Ca2+-buffering proteins, such as parvalbumin (PV) and calbindin D-28k (CB), are highly expressed in Purkinje neurons and therefore may influence Cav2.1 regulation by Ca2+. To test this, we compared Cav2.1 properties in dissociated Purkinje neurons from wild-type (WT) mice and those lacking both PV and CB (PV/CB−/−). Unexpectedly, P-type currents in WT and PV/CB−/− neurons differed in a way that was inconsistent with a role of PV and CB in acute modulation of Ca2+ feedback to Cav2.1. Cav2.1 currents in PV/CB−/− neurons exhibited increased voltage-dependent inactivation, which could be traced to decreased expression of the auxiliary Cavβ2a subunit compared with WT neurons. Although Cav2.1 channels are required for normal pacemaking of Purkinje neurons, spontaneous action potentials were not different in WT and PV/CB−/− neurons. Increased inactivation due to molecular switching of Cav2.1 β-subunits may preserve normal activity-dependent Ca2+ signals in the absence of Ca2+-buffering proteins in PV/CB−/− Purkinje neurons.
机译:Cav2.1通道调节小脑浦肯野神经元的Ca2 +信号传导和兴奋性。这些通道通过传入的Ca2 +离子,依赖Ca2 +的促进和失活经历双重反馈调节。内源性Ca2 +缓冲蛋白,例如小白蛋白(PV)和钙结合蛋白D-28k(CB)在Purkinje神经元中高度表达,因此可能影响Ca2 +对Cav2.1的调控。为了测试这一点,我们比较了野生型(WT)小鼠和缺乏PV和CB(PV / CB-/-)的分离的Purkinje神经元的Cav2.1特性。出乎意料的是,WT和PV / CB-/-神经元中的P型电流以与PV和CB在Ca2 +反馈至Cav2.1的急性调制中的作用不一致的方式不同。 PV / CB-/-神经元中的Cav2.1电流表现出增加的电压依赖性失活,这可以追溯到与WT神经元相比,辅助Cavβ2a亚基的表达降低。尽管Cav2.1通道是Purkinje神经元正常起搏所必需的,但自发动作电位在WT和PV / CB-/-神经元中没有差异。在PV / CB-/-Purkinje神经元中不存在Ca2 +缓冲蛋白的情况下,由于Cav2.1β亚基的分子转换而导致的失活增加,可以保留正常的活动依赖性Ca2 +信号。

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