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首页> 外文期刊>Cell Reports >Orai1 Channels Are Essential for Amplification of Glutamate-Evoked Ca2 Signals in Dendritic Spines to Regulate Working and Associative Memory
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Orai1 Channels Are Essential for Amplification of Glutamate-Evoked Ca2 Signals in Dendritic Spines to Regulate Working and Associative Memory

机译:OraI1通道对于扩增树突刺的谷氨酸诱发的CA2信号是必不可少的,以调节工作和关联记忆

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摘要

Store-operated Orai1 calcium channels function as highly Ca 2 -selective ion channels and are broadly expressed in many tissues including the central nervous system, but their contributions to cognitive processing are largely unknown. Here, we report that many measures of synaptic, cellular, and behavioral models of learning are markedly attenuated in mice lacking Orai1 in forebrain excitatory neurons. Results with focal glutamate uncaging in hippocampal neurons support an essential role of Orai1 channels in amplifying NMDA-receptor-induced dendritic Ca 2 transients that drive activity-dependent spine morphogenesis and long-term potentiation at Schaffer collateral-CA1 synapses. Consistent with these signaling roles, mice lacking Orai1 in pyramidal neurons (but not interneurons) exhibit striking deficits in working and associative memory tasks. These findings identify Orai1 channels as essential regulators of dendritic spine Ca 2 signaling, synaptic plasticity, and cognition.
机译:存储操作的ORAI1钙通道用作高度CA 2选择离子通道,并且在许多组织中广泛表达,包括中枢神经系统,但它们对认知处理的贡献主要是未知的。在这里,我们报告说,许多突触,蜂窝和行为模型的学习措施显着减弱缺乏侵入前脑兴奋性神经元的orai1的小鼠。结果局灶性谷氨酸在海马神经元中发布的结果支持orai1通道在扩增的NMDA受体诱导的树突式CA 2瞬变中的基本作用,该瞬变驱动Schaffer胶环-CA1突触的活性依赖性脊柱的形态发生和长期增强。与这些信号角色一致,缺乏奥莱氏菌在金字塔神经元(但不是Interneurons)中的小鼠在工作和关联记忆任务中表现出尖锐的缺陷。这些发现识别orai1信道作为树突脊柱Ca 2信号传导,突触可塑性和认知的基本调节器。

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