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首页> 外文期刊>The European Journal of Neuroscience >Expression of hyperpolarization-activated and cyclic nucleotide-gated cation channel subunit 2 in axon terminals of peptidergic nociceptive primary sensory neurons in the superficial spinal dorsal horn of rats.
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Expression of hyperpolarization-activated and cyclic nucleotide-gated cation channel subunit 2 in axon terminals of peptidergic nociceptive primary sensory neurons in the superficial spinal dorsal horn of rats.

机译:超极化激活和环状核苷酸门控的阳离子通道亚基2在大鼠浅表脊髓背角的肽能伤害性初级感觉神经元轴突末端的表达。

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Abstract Hyperpolarization-activated cyclic nucleotide-gated cation channel proteins (HCN1-4), which are potentially able to modulate membrane excitability, are abundantly expressed by neurons in spinal dorsal root ganglia (DRG). In the present experiment, we investigated whether HCN2 protein is confined exclusively to the perikarya of DRG neurons or is transported from the somata to the central axons of DRG neurons that terminate in the spinal dorsal horn. Using immunohistochemical methods, we have demonstrated that laminae I-IIo of the superficial spinal dorsal horn of the adult rat spinal cord show a strong punctate immunoreactivity for HCN2. Dorsal rhizotomy resulted in a complete loss of immunostaining in the dorsal horn, suggesting that HCN2 is confined to axon terminals of primary afferents. In double labelling immunohistochemical studies, we have also shown that HCN2 widely co-localizes with calcitonin gene-related peptide, but is almost completely segregated from isolectin-B4 binding, indicating that HCN2 is primarily expressed in peptidergic nociceptive primary afferents. The expression of HCN2 in central terminals of peptidergic primary afferents was also verified with electron microscopy. Utilizing the pre-embedding nanogold method, we found that HCN2 is largely confined to axon terminals with dense-core vesicles. Within these terminals, some of the silver grains marking the accurate location of HCN2 molecules were associated with the cell membrane, and others were scattered in the axoplasm. Within the cell membrane, HCN2 was found almost exclusively in extrasynaptic locations. The results suggest that HCN2 may contribute to the modulation of membrane excitability of nociceptive primary afferent terminals in the spinal dorsal horn.
机译:摘要超极化激活的环状核苷酸门控阳离子通道蛋白(HCN1-4)可能具有调节膜兴奋性的功能,在脊髓背根神经节(DRG)的神经元中大量表达。在本实验中,我们调查了HCN2蛋白是否仅局限在DRG神经元的核周或是从躯体转运至DRG神经元的中枢轴突,而该轴突终止于脊髓背角。使用免疫组织化学方法,我们已经证明成年大鼠脊髓的浅表脊髓背角的薄片I-IIo对HCN2表现出很强的点状免疫反应性。背根神经切断术导致背角的免疫染色完全丧失,表明HCN2局限于原发传入轴突末端。在双标记免疫组织化学研究中,我们还显示HCN2与降钙素基因相关肽广泛共定位,但几乎完全与isolectin-B4结合分离,表明HCN2主要在肽能性伤害性初级传入神经中表达。还通过电子显微镜证实了HCN2在肽能原代传入中心末端的表达。利用嵌入前的纳米金方法,我们发现HCN2很大程度上局限于具有密集核囊泡的轴突末端。在这些末端内,一些标记HCN2分子准确位置的银颗粒与细胞膜相关,而另一些则分散在轴质中。在细胞膜内,几乎仅在突触外位置发现了HCN2。结果表明,HCN2可能有助于调节脊髓背角伤害感受性初级传入末端的膜兴奋性。

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