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Developmental Regulation of Small-Conductance Ca2+-Activated K+ Channel Expression and Function in Rat Purkinje Neurons

机译:大鼠Purkinje神经元小电导Ca 2+激活的K +通道表达和功能的发育调控。

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摘要

Calcium transients play an important role in the early and later phases of differentiation and maturation of single neurons and neuronal networks. Small-conductance calcium-activated potassium channels of the SK type modulate membrane excitability and are important determinants of the firing properties of central neurons. Increases in the intracellular calcium concentration activate SK channels, leading to a hyperpolarization of the membrane potential, which in turn reduces the calcium inflow into the cell. This feedback mechanism is ideally suited to regulate the spatiotemporal occurrence of calcium transients. However, the role of SK channels in neuronal development has not been addressed so far. We have concentrated on the ontogenesis and function of SK channels in the developing rat cerebellum, focusing particularly on Purkinje neurons.Electrophysiological recordings combined with specific pharmacological tools have revealed for the first time the presence of an afterhyperpolarizing current (IAHP) in immature Purkinje cells in rat cerebellar slices. The channel subunits underlying this current were identified as SK2 and localized by in situ hybridization and subunit-specific antibodies. Their expression level was shown to be high at birth and subsequently to decline during the first 3 weeks of postnatal life, both at the mRNA and protein levels. This developmental regulation was tightly correlated with the expression ofIAHP and the prominent role of SK2 channels in shaping the spontaneous firing pattern in young, but not in adult, Purkinje neurons. These results provide the first evidence of the developmental regulation and function of SK channels in central neurons.
机译:钙瞬变在单个神经元和神经元网络的分化和成熟的早期和后期起着重要的作用。 SK型小电导钙激活钾通道调节膜兴奋性,并且是中枢神经元放电特性的重要决定因素。细胞内钙浓度的增加会激活SK通道,导致膜电位超极化,进而减少钙流入细胞的数量。此反馈机制非常适合调节钙瞬变的时空发生。但是,SK通道在神经元发育中的作用至今尚未解决。我们集中研究了发育中的大鼠小脑中SK通道的形成和功能,特别是针对浦肯野神经元。电生理记录结合特定的药理学手段首次揭示了未成熟浦肯野细胞中存在超极化后电流(IAHP)。大鼠小脑切片。该电流基础的通道亚基被鉴定为SK2,并通过原位杂交和亚基特异性抗体定位。它们的表达水平在出生时就很高,而在出生后的前三周内在mRNA和蛋白质水平上都下降。这种发育调节与IAHP的表达和SK2通道在塑造年轻的而非自然的浦肯野神经元的自发放电模式中的突出作用密切相关。这些结果为中枢神经元中SK通道的发育调控和功能提供了第一个证据。

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