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Kv4家族α亚基及相关KChIP β亚基在终纹床核中的分布与功能表达。

Distribution and functional expression of Kv4 family α subunits and associated KChIP β subunits in the bed nucleus of the stria terminalis.

作者信息

Rainnie Donald G, Hazra Rimi, Dabrowska Joanna, Guo Ji-Dong, Li Chen Chen, Dewitt Sarah, Muly E Chris

机构信息

Department of Psychiatry and Behavioral Sciences, Emory University, Atlanta, Georgia; Division of Behavioral Neuroscience and Psychiatric Disorders, Yerkes National Primate Research Center, Atlanta, Georgia.

出版信息

J Comp Neurol. 2014 Feb 15;522(3):609-25. doi: 10.1002/cne.23435.

Abstract

Regulation of BNSTALG neuronal firing activity is tightly regulated by the opposing actions of the fast outward potassium current, IA , mediated by α subunits of the Kv4 family of ion channels, and the transient inward calcium current, IT . Together, these channels play a critical role in regulating the latency to action potential onset, duration, and frequency, as well as dendritic back-propagation and synaptic plasticity. Previously we have shown that Type I-III BNSTALG neurons express mRNA transcripts for each of the Kv4 α subunits. However, the biophysical properties of native IA channels are critically dependent on the formation of macromolecular complexes of Kv4 channels with a family of chaperone proteins, the potassium channel-interacting proteins (KChIP1-4). Here we used a multidisciplinary approach to investigate the expression and function of Kv4 channels and KChIPs in neurons of the rat BNSTALG . Using immunofluorescence we demonstrated the pattern of localization of Kv4.2, Kv4.3, and KChIP1-4 proteins in the BNSTALG . Moreover, our single-cell reverse-transcription polymerase chain reaction (scRT-PCR) studies revealed that mRNA transcripts for Kv4.2, Kv4.3, and all four KChIPs were differentially expressed in Type I-III BNSTALG neurons. Furthermore, immunoelectron microscopy revealed that Kv4.2 and Kv4.3 channels were primarily localized to the dendrites and spines of BNSTALG neurons, and are thus ideally situated to modulate synaptic transmission. Consistent with this observation, in vitro patch clamp recordings showed that reducing postsynaptic IA in these neurons lowered the threshold for long-term potentiation (LTP) induction. These results are discussed in relation to potential modulation of IA channels by chronic stress.

摘要

终纹床核杏仁核外侧核(BNSTALG)神经元放电活动受快速外向钾电流IA和瞬态内向钙电流IT的相反作用严格调控,IA由离子通道Kv4家族的α亚基介导。这些通道共同在调节动作电位起始潜伏期、持续时间和频率以及树突反向传播和突触可塑性方面发挥关键作用。此前我们已表明,I - III型BNSTALG神经元表达Kv4各α亚基的mRNA转录本。然而,天然IA通道的生物物理特性严重依赖于Kv4通道与一类伴侣蛋白——钾通道相互作用蛋白(KChIP1 - 4)形成大分子复合物。在此,我们采用多学科方法研究大鼠BNSTALG神经元中Kv4通道和KChIPs的表达及功能。通过免疫荧光,我们展示了Kv4.2、Kv4.3和KChIP1 - 4蛋白在BNSTALG中的定位模式。此外,我们的单细胞逆转录聚合酶链反应(scRT - PCR)研究表明,Kv4.2、Kv4.3和所有四种KChIPs的mRNA转录本在I - III型BNSTALG神经元中差异表达。此外,免疫电子显微镜显示Kv4.2和Kv4.3通道主要定位于BNSTALG神经元的树突和棘,因此处于理想位置来调节突触传递。与这一观察结果一致,体外膜片钳记录显示,降低这些神经元的突触后IA会降低长时程增强(LTP)诱导的阈值。我们结合慢性应激对IA通道的潜在调节来讨论这些结果。

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