Rizzi Sandra, Knaus Hans-Günther, Schwarzer Christoph
Division of Molecular and Cellular Pharmacology, Medical University of Innsbruck, 6020, Innsbruck, Austria.
Department of Pharmacology, Medical University of Innsbruck, 6020, Innsbruck, Austria.
J Comp Neurol. 2016 Jul 1;524(10):2093-116. doi: 10.1002/cne.23934. Epub 2015 Dec 15.
The sodium-activated potassium channels Slick (Slo2.1, KCNT2) and Slack (Slo2.2, KCNT1) are high-conductance potassium channels of the Slo family. In neurons, Slick and Slack channels are involved in the generation of slow afterhyperpolarization, in the regulation of firing patterns, and in setting and stabilizing the resting membrane potential. The distribution and subcellular localization of Slick and Slack channels in the mouse brain have not yet been established in detail. The present study addresses this issue through in situ hybridization and immunohistochemistry. Both channels were widely distributed and exhibited distinct distribution patterns. However, in some brain regions, their expression overlapped. Intense Slick channel immunoreactivity was observed in processes, varicosities, and neuronal cell bodies of the olfactory bulb, granular zones of cortical regions, hippocampus, amygdala, lateral septal nuclei, certain hypothalamic and midbrain nuclei, and several regions of the brainstem. The Slack channel showed primarily a diffuse immunostaining pattern, and labeling of cell somata and processes was observed only occasionally. The highest Slack channel expression was detected in the olfactory bulb, lateral septal nuclei, basal ganglia, and distinct areas of the midbrain, brainstem, and cerebellar cortex. In addition, comparing our data obtained from mouse brain with a previously published study on rat brain revealed some differences in the expression and distribution of Slick and Slack channels in these species. J. Comp. Neurol. 524:2093-2116, 2016. © 2015 The Authors The Journal of Comparative Neurology Published by Wiley Periodicals, Inc.
钠激活钾通道Slick(Slo2.1,KCNT2)和Slack(Slo2.2,KCNT1)是Slo家族的高电导钾通道。在神经元中,Slick和Slack通道参与慢后超极化的产生、放电模式的调节以及静息膜电位的设定和稳定。Slick和Slack通道在小鼠脑中的分布和亚细胞定位尚未详细确定。本研究通过原位杂交和免疫组织化学解决了这个问题。两种通道分布广泛且呈现出不同的分布模式。然而,在一些脑区,它们的表达存在重叠。在嗅球的突起、曲张体和神经元细胞体、皮质区域的颗粒区、海马体、杏仁核、外侧隔核、某些下丘脑和中脑核以及脑干的几个区域观察到强烈的Slick通道免疫反应性。Slack通道主要呈现弥漫性免疫染色模式,仅偶尔观察到细胞体和突起的标记。在嗅球、外侧隔核、基底神经节以及中脑、脑干和小脑皮质的不同区域检测到最高的Slack通道表达。此外,将我们从小鼠脑获得的数据与先前发表的关于大鼠脑的研究进行比较,发现这些物种中Slick和Slack通道的表达和分布存在一些差异。《比较神经学杂志》524:2093 - 2116,2016年。©2015作者 比较神经学杂志 由威利期刊公司出版