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谷氨酸能调制哺乳动物毛囊机械感觉叉状神经末梢的突触小泡循环再利用。

Glutamatergic modulation of synaptic-like vesicle recycling in mechanosensory lanceolate nerve terminals of mammalian hair follicles.

机构信息

University of Aberdeen, School of Medical Sciences, School of Medical Sciences, Institute of Medical Sciences, Foresterhill, Aberdeen AB25 2ZD, UK.

出版信息

J Physiol. 2013 May 15;591(10):2523-40. doi: 10.1113/jphysiol.2012.243659. Epub 2013 Feb 25.

Abstract

Our aim in the present study was to determine whether a glutamatergic modulatory system involving synaptic-like vesicles (SLVs) is present in the lanceolate ending of the mouse and rat hair follicle and, if so, to assess its similarity to that of the rat muscle spindle annulospiral ending we have described previously. Both types of endings are formed by the peripheral sensory terminals of primary mechanosensory dorsal root ganglion cells, so the presence of such a system in the lanceolate ending would provide support for our hypothesis that it is a general property of fundamental importance to the regulation of the responsiveness of the broad class of primary mechanosensory endings. We show not only that an SLV-based system is present in lanceolate endings, but also that there are clear parallels between its operation in the two types of mechanosensory endings. In particular, we demonstrate that, as in the muscle spindle: (i) FM1-43 labels the sensory terminals of the lanceolate ending, rather than the closely associated accessory (glial) cells; (ii) the dye enters and leaves the terminals primarily by SLV recycling; (iii) the dye does not block the electrical response to mechanical stimulation, in contrast to its effect on the hair cell and dorsal root ganglion cells in culture; (iv) SLV recycling is Ca(2+) sensitive; and (v) the sensory terminals are enriched in glutamate. Thus, in the lanceolate sensory ending SLV recycling is itself regulated, at least in part, by glutamate acting through a phospholipase D-coupled metabotropic glutamate receptor.

摘要

我们在本研究中的目的是确定是否存在涉及突触小泡(SLVs)的谷氨酸能调节系统在小鼠和大鼠毛囊的镰状终末中,如果存在,评估其与我们之前描述的大鼠肌梭环螺旋终末的相似性。这两种终末都是由初级机械感觉背根神经节细胞的外周感觉末梢形成的,因此在镰状终末中存在这样的系统将支持我们的假设,即它是调节广泛的初级机械感觉末梢的反应性的重要普遍特性。我们不仅证明了基于 SLV 的系统存在于镰状终末中,而且还证明了两种机械感觉终末中该系统的操作之间存在明显的相似之处。特别是,我们证明了与肌梭中的情况一样:(i)FM1-43 标记镰状终末的感觉末梢,而不是密切相关的附属(神经胶质)细胞;(ii)染料主要通过 SLV 再循环进入和离开末梢;(iii)与对培养中的毛细胞和背根神经节细胞的作用相反,染料不会阻断对机械刺激的电反应;(iv)SLV 再循环对 Ca2+敏感;(v)感觉末梢富含谷氨酸。因此,在镰状感觉终末中,SLV 再循环本身至少部分受到通过与磷酯酶 D 偶联的代谢型谷氨酸受体起作用的谷氨酸的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bdd/3678041/94b53f6eeec4/tjp0591-2523-f1.jpg

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