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使用多重核酸杂交技术测定成年啮齿动物脑中HCN4 mRNA的表达。

Using a Multiplex Nucleic Acid Hybridization Technique to Determine HCN4 mRNA Expression in the Adult Rodent Brain.

作者信息

Oyrer Julia, Bleakley Lauren E, Richards Kay L, Maljevic Snezana, Phillips A Marie, Petrou Steven, Nowell Cameron J, Reid Christopher A

机构信息

Florey Institute of Neuroscience and Mental Health, The University of Melbourne, Melbourne, VIC, Australia.

School of Biosciences, The University of Melbourne, Parkville, VIC, Australia.

出版信息

Front Mol Neurosci. 2019 Aug 28;12:211. doi: 10.3389/fnmol.2019.00211. eCollection 2019.

Abstract

Hyperpolarization-activated cyclic nucleotide-gated (HCN) channels carry a non-selective cationic conductance, I , which is important for modulating neuron excitability. Four genes () encode HCN channels, with each gene having distinct expression and biophysical profiles. Here we use multiplex nucleic acid hybridization to determine HCN4 mRNA expression within the adult mouse brain. We take advantage of this approach to detect HCN4 mRNA simultaneously with either HCN1 or HCN2 mRNA and markers of excitatory (VGlut-positive) and inhibitory (VGat-positive) neurons, which was not previously reported. We have developed a Fiji-based analysis code that enables quantification of mRNA expression within identified cell bodies. The highest HCN4 mRNA expression was found in the habenula (medial and lateral) and the thalamus. HCN4 mRNA was particularly high in the medial habenula with essentially no co-expression of HCN1 or HCN2 mRNA. An absence of I -mediated "sag" in neurons recorded from the medial habenula of knockout mice confirmed that HCN4 channels are the predominant subtype in this region. Analysis in the thalamus revealed HCN4 mRNA in VGlut2-positive excitatory neurons that was always co-expressed with HCN2 mRNA. In contrast, HCN4 mRNA was undetectable in the nucleus reticularis. HCN4 mRNA expression was high in a subset of VGat-positive cells in the globus pallidus external. The majority of these neurons co-expressed HCN2 mRNA while a smaller subset also co-expressed HCN1 mRNA. In the striatum, a small subset of large cells which are likely to be giant cholinergic interneurons co-expressed high levels of HCN4 and HCN2 mRNA. The amygdala, cortex and hippocampus expressed low levels of HCN4 mRNA. This study highlights the heterogeneity of HCN4 mRNA expression in the brain and provides a morphological framework on which to better investigate the functional roles of HCN4 channels.

摘要

超极化激活的环核苷酸门控(HCN)通道携带一种非选择性阳离子电导I ,这对于调节神经元兴奋性很重要。四个基因( )编码HCN通道,每个基因具有不同的表达和生物物理特征。在这里,我们使用多重核酸杂交来确定成年小鼠脑内HCN4 mRNA的表达。我们利用这种方法同时检测HCN4 mRNA与HCN1或HCN2 mRNA以及兴奋性(VGlut阳性)和抑制性(VGat阳性)神经元的标志物,这是以前未报道过的。我们开发了一种基于Fiji的分析代码,能够对已识别细胞体内的mRNA表达进行定量。在缰核(内侧和外侧)和丘脑中发现HCN4 mRNA表达最高。HCN4 mRNA在内侧缰核中特别高,基本上没有HCN1或HCN2 mRNA的共表达。从基因敲除小鼠内侧缰核记录的神经元中缺乏I 介导的“下垂”,证实HCN4通道是该区域的主要亚型。在丘脑中的分析显示,VGlut2阳性兴奋性神经元中有HCN4 mRNA,且总是与HCN2 mRNA共表达。相比之下,在网状核中未检测到HCN4 mRNA。苍白球外侧的一部分VGat阳性细胞中HCN4 mRNA表达较高。这些神经元中的大多数共表达HCN2 mRNA,而一小部分也共表达HCN1 mRNA。在纹状体中,一小部分可能是巨大胆碱能中间神经元的大细胞共表达高水平的HCN4和HCN2 mRNA。杏仁核、皮层和海马体中HCN4 mRNA表达水平较低。这项研究突出了脑内HCN4 mRNA表达的异质性,并提供了一个形态学框架,以便更好地研究HCN4通道的功能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b22d/6724756/f1cb09954187/fnmol-12-00211-g001.jpg

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