首页> 美国卫生研究院文献>The Journal of Neuroscience >Inhibition of Conditioned Stimulus Pathway Phosphoprotein 24 Expression Blocks the Reduction in A-Type Transient K+ Current Produced by One-Trial In Vitro Conditioning of Hermissenda
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Inhibition of Conditioned Stimulus Pathway Phosphoprotein 24 Expression Blocks the Reduction in A-Type Transient K+ Current Produced by One-Trial In Vitro Conditioning of Hermissenda

机译:有条件的刺激途径磷蛋白24表达的抑制作用阻止了Hermissenda的一次体外试验产生的A型瞬时K +电流的减少。

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摘要

Long-term intrinsic enhanced excitability is a characteristic of cellular plasticity and learning-dependent modifications in the activity of neural networks. The regulation of voltage-dependent K+ channels by phosphorylation/dephosphorylation and their localization is proposed to be important in the control of cellular plasticity. One-trial conditioning in Hermissenda results in enhanced excitability in sensory neurons, type B photoreceptors, of the conditioned stimulus pathway. Conditioning also regulates the phosphorylation of conditioned stimulus pathway phosphoprotein 24 (Csp24), a cytoskeletal-related protein containing multiple β-thymosin-like domains. Recently, it was shown that the downregulation of Csp24 expression mediated by an antisense oligonucleotide blocked the development of enhanced excitability in identified type B photoreceptors after one-trial conditioning without affecting short-term excitability. Here, we show using whole-cell patch recordings that one-trial in vitro conditioning applied to isolated photoreceptors produces a significant reduction in the amplitude of the A-type transient K+ current (IA) detected 1.5-16 h after conditioning. One-trial conditioning produced a depolarized shift in the steady-state activation curve of IA without altering the inactivation curve. The conditioning-dependent reduction in IA was blocked by preincubation of the photoreceptors with Csp antisense oligonucleotide. These results provide an important link between Csp24, a cytoskeletal protein, and regulation of voltage-gated ion channels associated with intrinsic enhanced excitability underlying pavlovian conditioning.
机译:长期内在增强的兴奋性是细胞可塑性和神经网络活动中学习依赖型修饰的特征。提出通过磷酸化/去磷酸化及其定位来调控电压依赖性K + 通道,对控制细胞的可塑性具有重要意义。 Hermissenda中的一次试验条件导致条件刺激路径的感觉神经元(B型感光细胞)的兴奋性增强。调理还调节条件刺激途径磷蛋白24(Csp24)的磷酸化,这是一种细胞骨架相关蛋白,包含多个β-胸腺素样结构域。最近,显示了由一次反义寡核苷酸介导的Csp24表达的下调阻止了一次试验条件下已鉴定的B型光感受器中增强的兴奋性的发展,而不影响短期兴奋性。在这里,我们显示了使用全细胞补丁记录,将一次试验的体外条件应用于分离的感光体,可显着降低检测到的1.5-A型瞬时K + 电流(IA)的幅度。调理后16小时。一试条件在不改变灭活曲线的情况下,在IA的稳态激活曲线中产生了去极化移位。通过将感光体与Csp反义寡核苷酸预孵育来阻止IA的条件依赖性降低。这些结果提供了Csp24(一种细胞骨架蛋白)与电压门控离子通道的调节之间的重要联系,该电压门控离子通道与潜在的帕夫洛夫条件增强了的兴奋性相关。

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