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突触素样免疫反应存在于蟾鱼壶腹嵴的毛细胞和传出神经末梢中。

Synapsin-like immunoreactivity is present in hair cells and efferent terminals of the toadfish crista ampullaris.

作者信息

Holstein G R, Martinelli G P, Nicolae R A, Rosenthal T M, Friedrich V L

机构信息

Department of Neurology, Mount Sinai School of Medicine, One Gustave L. Levy Place, Box 1140, New York, NY 10029, USA.

出版信息

Exp Brain Res. 2005 Apr;162(3):287-92. doi: 10.1007/s00221-004-2194-5. Epub 2004 Dec 15.

Abstract

The synapsins are presynaptic membrane-associated proteins involved in neurotransmitter release. They are differentially expressed in tissues and cells of the central and peripheral nervous system. In vestibular end organs of mammals, synapsin I-like immunoreactivity has been reported in efferent and afferent terminals and in afferent nerve calyces surrounding type I hair cells. In addition, synapsin I has recently been described in several non-neural cell lines. The present study was conducted to locate synapsin-like immunoreactivity in the neuronal and non-neuronal cells of the fish crista ampullaris, to examine the possibility that the non-neuronal sensory receptor cells express synapsins in vivo. Synapsin-like immunostaining was visualized by immunofluorescence detection in wholemounts of the toadfish crista ampullaris using multiphoton laser scanning microscopy and by electron microscopic visualization of post-embedding immunogold labeling. The results demonstrate that synapsin-like immunoreactivity is present in vestibular hair cells and efferent boutons of the toadfish crista ampullaris. Afferent endings are not labeled. Staining in hair cells is not associated with the synaptic ribbons, suggesting that there is an additional, non-synaptic role for the synapsins in some non-neuronal cells of vertebrates. Moreover, while the cristae of amniote and anamniote species share many functional attributes, differences in their synaptic vesicle-associated protein profiles appear to reflect their disparate hair cell populations.

摘要

突触素是与突触前膜相关的蛋白质,参与神经递质释放。它们在中枢和外周神经系统的组织和细胞中差异表达。在哺乳动物的前庭终器中,已报道在传出和传入终末以及围绕I型毛细胞的传入神经壶腹中有突触素I样免疫反应性。此外,最近在几种非神经细胞系中也描述了突触素I。本研究旨在定位鱼壶腹嵴的神经元和非神经元细胞中的突触素样免疫反应性,以研究非神经元感觉受体细胞在体内表达突触素的可能性。使用多光子激光扫描显微镜通过免疫荧光检测在蟾蜍鱼壶腹嵴的整装标本中观察突触素样免疫染色,并通过包埋后免疫金标记的电子显微镜观察。结果表明,突触素样免疫反应性存在于蟾蜍鱼壶腹嵴的前庭毛细胞和传出终扣中。传入末梢未被标记。毛细胞中的染色与突触带无关,这表明突触素在脊椎动物的一些非神经元细胞中具有额外的非突触作用。此外,虽然羊膜动物和无羊膜动物物种的嵴具有许多功能属性,但它们突触小泡相关蛋白谱的差异似乎反映了它们不同毛细胞群体的情况。

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