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小鼠Scn10a基因启动子的一个3.7 kb片段在转基因动物中指导神经嵴而非基板谱系的EGFP表达。

A 3.7 kb fragment of the mouse Scn10a gene promoter directs neural crest but not placodal lineage EGFP expression in a transgenic animal.

作者信息

Lu Van B, Ikeda Stephen R, Puhl Henry L

机构信息

Section on Transmitter Signaling, Laboratory of Molecular Physiology, National Institute on Alcohol Abuse and Alcoholism, National Institutes of Health, Bethesda, Maryland 20892-9411.

Section on Transmitter Signaling, Laboratory of Molecular Physiology, National Institute on Alcohol Abuse and Alcoholism, National Institutes of Health, Bethesda, Maryland 20892-9411

出版信息

J Neurosci. 2015 May 20;35(20):8021-34. doi: 10.1523/JNEUROSCI.0214-15.2015.

Abstract

Under physiological conditions, the voltage-gated sodium channel Nav1.8 is expressed almost exclusively in primary sensory neurons. The mechanism restricting Nav1.8 expression is not entirely clear, but we have previously described a 3.7 kb fragment of the Scn10a promoter capable of recapitulating the tissue-specific expression of Nav1.8 in transfected neurons and cell lines (Puhl and Ikeda, 2008). To validate these studies in vivo, a transgenic mouse encoding EGFP under the control of this putative sensory neuron specific promoter was generated and characterized in this study. Approximately 45% of dorsal root ganglion neurons of transgenic mice were EGFP-positive (mean diameter = 26.5 μm). The majority of EGFP-positive neurons bound isolectin B4, although a small percentage (∼10%) colabeled with markers of A-fiber neurons. EGFP expression correlated well with the presence of Nav1.8 transcript (95%), Nav1.8-immunoreactivity (70%), and TTX-R INa (100%), although not all Nav1.8-expressing neurons expressed EGFP. Several cranial sensory ganglia originating from neurogenic placodes, such as the nodose ganglion, failed to express EGFP, suggesting that additional regulatory elements dictate Scn10a expression in placodal-derived sensory neurons. EGFP was also detected in discrete brain regions of transgenic mice. Quantitative PCR and Nav1.8-immunoreactivity confirmed Nav1.8 expression in the amygdala, brainstem, globus pallidus, lateral and paraventricular hypothalamus, and olfactory tubercle. TTX-R INa recorded from EGFP-positive hypothalamic neurons demonstrate the usefulness of this transgenic line to study novel roles of Nav1.8 beyond sensory neurons. Overall, Scn10a-EGFP transgenic mice recapitulate the majority of the Nav1.8 expression pattern in neural crest-derived sensory neurons.

摘要

在生理条件下,电压门控钠通道Nav1.8几乎只在初级感觉神经元中表达。限制Nav1.8表达的机制尚不完全清楚,但我们之前描述过一个3.7 kb的Scn10a启动子片段,它能够在转染的神经元和细胞系中重现Nav1.8的组织特异性表达(Puhl和Ikeda,2008年)。为了在体内验证这些研究,本研究构建并鉴定了一种在该假定的感觉神经元特异性启动子控制下编码EGFP的转基因小鼠。转基因小鼠约45%的背根神经节神经元为EGFP阳性(平均直径 = 26.5 μm)。大多数EGFP阳性神经元结合异凝集素B4,尽管有一小部分(约10%)与A纤维神经元标记物共标记。EGFP表达与Nav1.8转录本的存在(95%)、Nav1.8免疫反应性(70%)和TTX-R INa(100%)相关性良好,尽管并非所有表达Nav1.8的神经元都表达EGFP。一些起源于神经嵴的颅感觉神经节,如结状神经节,未能表达EGFP,这表明还有其他调控元件决定Scn10a在神经嵴衍生的感觉神经元中的表达。在转基因小鼠的离散脑区也检测到了EGFP。定量PCR和Nav1.8免疫反应性证实了杏仁核、脑干、苍白球、外侧和室旁下丘脑以及嗅结节中存在Nav1.8表达。从EGFP阳性下丘脑神经元记录到的TTX-R INa证明了该转基因品系在研究Nav1.8在感觉神经元之外的新作用方面的有用性。总体而言,Scn10a-EGFP转基因小鼠重现了神经嵴衍生的感觉神经元中大部分Nav1.8的表达模式。

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