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TRPC3 channels critically regulate hippocampal excitability and contextual fear memory

机译:TRPC3通道严格调节海马兴奋性和上下文恐惧记忆

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摘要

Memory formation requires de novo protein synthesis, and memory disorders may result from misregulated synthesis of critical proteins that remain largely unidentified. Plasma membrane ion channels and receptors are likely candidates given their role in regulating neuron excitability, a candidate memory mechanism. Here we conduct targeted molecular monitoring and quantitation of hippocampal plasma membrane proteins from mice with intact or impaired contextual fear memory to identify putative candidates. Here we report contextual fear memory deficits correspond to increased Trpc3 gene and protein expression, and demonstrate TRPC3 regulates hippocampal neuron excitability associated with memory function. These data provide a mechanistic explanation for enhanced contextual fear memory reported herein following knockdown of TRPC3 in hippocampus. Collectively, TRPC3 modulates memory and may be a feasible target to enhance memory and treat memory disorders.
机译:记忆形成需要从头进行蛋白质合成,而记忆失调可能是由于关键蛋白质的合成调控失调所致,而这些蛋白质在很大程度上仍未被发现。鉴于质膜离子通道和受体在调节神经元兴奋性(候选记忆机制)中的作用,可能是候选物质。在这里,我们进行了有针对性的分子监测和海马质膜蛋白的定量检测,从小鼠的完整或受损的上下文恐惧记忆来确定假定的候选人。在这里,我们报告上下文恐惧记忆缺陷对应于增加的Trpc3基因和蛋白质表达,并证明TRPC3调节与记忆功能相关的海马神经元兴奋性。这些数据提供了在海马中TRPC3敲低后本文报道的增强的背景恐惧记忆的机制解释。总的来说,TRPC3调节记忆力,可能是增强记忆力和治疗记忆障碍的可行目标。

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