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在斑马鱼中,神经组胺的储存和组胺能神经传递依赖于 VMAT2。

Storage of neural histamine and histaminergic neurotransmission is VMAT2 dependent in the zebrafish.

机构信息

Neuroscience Center and Department of Anatomy, University of Helsinki, Helsinki, Finland.

出版信息

Sci Rep. 2017 Jun 8;7(1):3060. doi: 10.1038/s41598-017-02981-w.

Abstract

Monoaminergic neurotransmission is greatly dependent on the function of the vesicular monoamine transporter VMAT2, which is responsible for loading monoamines into secretory vesicles. The role of VMAT2 in histaminergic neurotransmission is poorly understood. We studied the structure and function of the histaminergic system in larval zebrafish following inhibition of VMAT2 function by reserpine. We found that reserpine treatment greatly reduced histamine immunoreactivity in neurons and an almost total disappearance of histamine-containing nerve fibers in the dorsal telencephalon and habenula, the most densely innervated targets of the hypothalamic histamine neurons. The reserpine treated larvae had an impaired histamine-dependent dark-induced flash response seen during the first second after onset of darkness, implying that function of the histaminergic network is VMAT2 dependent. Levels of histamine and other monoamines were decreased in reserpine treated animals. This study provides conclusive evidence of the relevance of VMAT2 in histaminergic neurotransmission, further implying that the storage and release mechanism of neural histamine is comparable to that of other monoamines. Our results also reveal potential new insights about the roles of monoaminergic neurotransmitters in the regulation of locomotion increase during adaptation to darkness.

摘要

单胺能神经传递在很大程度上依赖于囊泡单胺转运体 VMAT2 的功能,VMAT2 负责将单胺类物质装入分泌囊泡。VMAT2 在组胺能神经传递中的作用还知之甚少。我们通过利血平抑制 VMAT2 功能,研究了幼虫斑马鱼组胺能系统的结构和功能。我们发现利血平处理大大降低了神经元中的组胺免疫反应,并且在背侧端脑和缰核中,下丘脑组胺神经元最密集的靶区,组胺能神经纤维几乎完全消失。利血平处理的幼虫在黑暗开始后的第一秒钟出现了受损的组胺依赖性暗诱导闪光反应,这表明组胺能网络的功能依赖于 VMAT2。利血平处理的动物中组胺和其他单胺类物质的水平降低。这项研究提供了确凿的证据,证明 VMAT2 在组胺能神经传递中具有重要作用,进一步表明神经组胺的储存和释放机制与其他单胺类物质相似。我们的研究结果还揭示了单胺能神经递质在调节对黑暗适应过程中运动增加中的潜在新作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/875b/5465064/f32408289cc5/41598_2017_2981_Fig1_HTML.jpg

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