首页> 美国卫生研究院文献>The Journal of Neuroscience >Regulation of Neuronal Excitability by Interaction of Fragile X Mental Retardation Protein with Slack Potassium Channels
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Regulation of Neuronal Excitability by Interaction of Fragile X Mental Retardation Protein with Slack Potassium Channels

机译:脆性X智力低下蛋白与钾通道松弛相互作用对神经元兴奋性的调节

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摘要

Loss of the RNA-binding protein fragile X mental retardation protein (FMRP) represents the most common form of inherited intellectual disability. Studies with heterologous expression systems indicate that FMRP interacts directly with Slack Na+-activated K+ channels (KNa), producing an enhancement of channel activity. We have now used Aplysia bag cell (BC) neurons, which regulate reproductive behaviors, to examine the effects of Slack and FMRP on excitability. FMRP and Slack immunoreactivity were colocalized at the periphery of isolated BC neurons, and the two proteins could be reciprocally coimmunoprecipitated. Intracellular injection of FMRP lacking its mRNA binding domain rapidly induced a biphasic outward current, with an early transient tetrodotoxin-sensitive component followed by a slowly activating sustained component. The properties of this current matched that of the native Slack potassium current, which was identified using an siRNA approach. Addition of FMRP to inside-out patches containing native Aplysia Slack channels increased channel opening and, in current-clamp recordings, produced narrowing of action potentials. Suppression of Slack expression did not alter the ability of BC neurons to undergo a characteristic prolonged discharge in response to synaptic stimulation, but prevented recovery from a prolonged inhibitory period that normally follows the discharge. Recovery from the inhibited period was also inhibited by the protein synthesis inhibitor anisomycin. Our studies indicate that, in BC neurons, Slack channels are required for prolonged changes in neuronal excitability that require new protein synthesis, and raise the possibility that channel–FMRP interactions may link changes in neuronal firing to changes in protein translation.
机译:RNA结合蛋白脆性X智力低下蛋白(FMRP)的丢失代表遗传性智力障碍的最常见形式。异源表达系统的研究表明,FMRP与Slack Na + 激活的K + 通道(KNa)直接相互作用,从而增强了通道活性。现在,我们已经使用调节生殖行为的Aplysia袋细胞(BC)神经元来检查Slack和FMRP对兴奋性的影响。 FMRP和Slack免疫反应性共定位在分离的BC神经元的周围,并且两种蛋白质可以相互共免疫沉淀。缺乏其mRNA结合结构域的FMRP的细胞内注射迅速诱导了两相外向电流,具有早期的河豚毒素敏感成分,然后是缓慢激活的持续成分。该电流的特性与使用siRNA方法鉴定的天然Slack钾电流的特性相匹配。将FMRP添加到含有天然Aplysia Slack通道的由内而外的贴片中会增加通道的打开度,并且在电流钳记录中会导致动作电位的缩小。 Slack表达的抑制并没有改变BC神经元响应突触刺激而经历特征性延长放电的能力,但阻止了正常放电后延长的抑制期的恢复。蛋白质合成抑制剂茴香霉素也抑制了从抑制期的恢复。我们的研究表明,在BC神经元中,松弛通道是神经元兴奋性的长期变化所必需的,而这种变化需要新的蛋白质合成,并且增加了通道与FMRP相互作用可能将神经元放电的变化与蛋白质翻译变化联系起来的可能性。

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