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缺乏 erg3(醚源性基因相关基因)K 通道亚基的小鼠浦肯野细胞过度兴奋和类似抑郁的行为。

Purkinje cell hyperexcitability and depressive-like behavior in mice lacking erg3 (ether-à-go-go-related gene) K channel subunits.

机构信息

Institute of Molecular Neurogenetics, Center for Molecular Neurobiology Hamburg (ZMNH), University Medical Center Hamburg-Eppendorf (UKE), Hamburg, Germany.

Core Facility Transgenic Animals, Center for Molecular Neurobiology Hamburg (ZMNH), University Medical Center Hamburg-Eppendorf (UKE), Hamburg, Germany.

出版信息

Sci Adv. 2024 Oct 4;10(40):eadn6836. doi: 10.1126/sciadv.adn6836.

Abstract

Potassium channels stabilize the resting potential and neuronal excitability. Among them, erg (ether-à-go-go-related gene) K channels represent a subfamily of voltage-gated channels, consisting of erg1, erg2, and erg3 subunits; however, their subunit-specific neuronal functions in vivo are barely understood. To find erg3- and erg1-mediated functions, we generated global () and conditional () knockout mice. We found that erg3 channels stabilize the resting potential and dampen spontaneous activity in cerebellar Purkinje cells (PCs) and hippocampal CA1 neurons, whereas erg1 channels have suprathreshold functions. Lack of erg3 subunits induced hyperexcitability with increased action potential firing in PCs, but not in CA1 neurons. Notably, erg3 depletion caused depressive-like behavior with reduced locomotor activity, strongly decreased digging behavior, and shorter latencies to fall off a rotating wheel, while learning and memory remained unchanged. Our data show that erg K channels containing erg3 subunits mediate a neuronal subthreshold K current that plays important roles in the regulation of locomotor behavior in vivo.

摘要

钾通道稳定静息电位和神经元兴奋性。其中,erg(醚-ago-go 相关基因)K 通道代表电压门控通道的一个亚家族,由 erg1、erg2 和 erg3 亚基组成;然而,它们在体内的亚基特异性神经元功能几乎不为人知。为了寻找 erg3 和 erg1 介导的功能,我们生成了全局()和条件性()敲除小鼠。我们发现 erg3 通道稳定静息电位,并抑制小脑浦肯野细胞(PC)和海马 CA1 神经元的自发性活动,而 erg1 通道具有阈上功能。缺乏 erg3 亚基会导致 PC 中的动作电位发射增加,从而引起过度兴奋,但在 CA1 神经元中则不会。值得注意的是,erg3 耗竭导致类似抑郁的行为,表现为运动活性降低、挖掘行为显著减少以及从旋转轮上跌落的潜伏期缩短,而学习和记忆保持不变。我们的数据表明,含有 erg3 亚基的 erg K 通道介导一种神经元阈下 K 电流,在调节体内运动行为方面发挥着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7a6/11451553/b2f92a8021ba/sciadv.adn6836-f1.jpg

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