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PRMT7 缺乏导致 CA1 锥体神经元中 HCN 通道的失调和社会行为的损害。

PRMT7 deficiency causes dysregulation of the HCN channels in the CA1 pyramidal cells and impairment of social behaviors.

机构信息

Department of Physiology, Sungkyunkwan University School of Medicine, Suwon, Korea.

Single Cell Network Research Center, Sungkyunkwan University School of Medicine, Suwon, Korea.

出版信息

Exp Mol Med. 2020 Apr;52(4):604-614. doi: 10.1038/s12276-020-0417-x. Epub 2020 Apr 8.

Abstract

HCN channels regulate excitability and rhythmicity in the hippocampal CA1 pyramidal cells. Perturbation in the HCN channel current (I) is associated with neuropsychiatric disorders, such as autism spectrum disorders. Recently, protein arginine methyltransferase 7 (PRMT7) was shown to be highly expressed in the hippocampus, including the CA1 region. However, the physiological function of PRMT7 in the CA1 neurons and the relationship to psychiatric disorders are unclear. Here we showed that PRMT7 knockout (KO) mice exhibit hyperactivity and deficits in social interaction. The firing frequency of the CA1 neurons in the PRMT7 KO mice was significantly higher than that in the wild-type (WT) mice. Compared with the WT CA1 neurons, the PRMT7 KO CA1 neurons showed a more hyperpolarized resting potential and a higher input resistance, which were occluded by the I-current inhibitor ZD7288; these findings were consistent with the decreased I and suggested the contribution of I-channel dysfunction to the PRMT7 KO phenotypes. The HCN1 protein level was decreased in the CA1 region of the PRMT7 KO mice in conjunction with a decrease in the expression of Shank3, which encodes a core scaffolding protein for HCN channel proteins. A brief application of the PRMT7 inhibitor DS437 did not reproduce the phenotype of the PRMT7 KO neurons, further indicating that PRMT7 regulates I by controlling the channel number rather than the open probability. Moreover, shRNA-mediated PRMT7 suppression reduced both the mRNA and protein levels of SHANK3, implying that PRMT7 deficiency might be responsible for the decrease in the HCN protein levels by altering Shank3 expression. These findings reveal a key role for PRMT7 in the regulation of HCN channel density in the CA1 pyramidal cells that may be amenable to pharmacological intervention for neuropsychiatric disorders.

摘要

HCN 通道调节海马 CA1 锥体神经元的兴奋性和节律性。HCN 通道电流 (I) 的扰动与神经精神疾病有关,如自闭症谱系障碍。最近,蛋白质精氨酸甲基转移酶 7 (PRMT7) 被显示在海马体中高度表达,包括 CA1 区域。然而,PRMT7 在 CA1 神经元中的生理功能以及与精神疾病的关系尚不清楚。在这里,我们发现 PRMT7 敲除 (KO) 小鼠表现出过度活跃和社交互动缺陷。PRMT7 KO 小鼠的 CA1 神经元放电频率明显高于野生型 (WT) 小鼠。与 WT CA1 神经元相比,PRMT7 KO CA1 神经元表现出更超极化的静息电位和更高的输入电阻,这被 I 电流抑制剂 ZD7288 阻断;这些发现与 I 减少一致,并表明 I 通道功能障碍对 PRMT7 KO 表型的贡献。PRMT7 KO 小鼠 CA1 区的 HCN1 蛋白水平降低,同时 Shank3 的表达降低,Shank3 编码 HCN 通道蛋白的核心支架蛋白。PRMT7 抑制剂 DS437 的短暂应用不能再现 PRMT7 KO 神经元的表型,进一步表明 PRMT7 通过控制通道数量而不是开放概率来调节 I。此外,shRNA 介导的 PRMT7 抑制降低了 SHANK3 的 mRNA 和蛋白水平,暗示 PRMT7 缺乏可能通过改变 Shank3 表达导致 HCN 蛋白水平降低。这些发现揭示了 PRMT7 在调节 CA1 锥体神经元中 HCN 通道密度方面的关键作用,这可能为神经精神疾病的药物干预提供了一种可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6614/7210990/a55d3bc7876c/12276_2020_417_Fig1_HTML.jpg

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