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毛细胞的带状突触的分子解剖结构。

Molecular anatomy of the hair cell's ribbon synapse.

机构信息

Howard Hughes Medical Institute and Laboratory of Sensory Neuroscience, The Rockefeller University, New York, New York 10065, USA.

出版信息

J Neurosci. 2010 Sep 15;30(37):12387-99. doi: 10.1523/JNEUROSCI.1014-10.2010.

Abstract

Hearing depends on reliable and temporally precise neurotransmission by cochlear hair cells. The wide dynamic range and high sensitivity with which these cells encode acoustic stimuli are associated with a presynaptic specialization termed the presynaptic dense body or synaptic ribbon. Apposed to the presynaptic density, this spherical or flattened structure tethers a layer of synaptic vesicles and is thought to facilitate their exocytotic fusion. Although defining the molecular constituents of the hair cell's synaptic ribbon should contribute to our understanding of neurotransmitter release at this synapse, accomplishing this task has been slowed by the difficulty of obtaining sufficient amounts of starting material for protein analysis from hair cells. We isolated synaptic material from chicken cochleas, purified synaptic ribbons with specific immunological reagents, and identified the associated proteins by tandem mass spectrometry. Purification of the ribbons revealed a predominant composition of C-terminal-binding proteins, especially ribeye, in association with the small GTPase Rab3, which is possibly involved in attaching vesicles to the ribbon. In comparison with the components of conventional synapses and of retinal ribbon synapses, we observed that certain regulatory proteins are excluded from the hair cell's synapse. Using antisera against several of the novel proteins and membrane-trafficking components that we had identified, we documented their localization in isolated hair cells. Our results indicate that the ribbon synapses of hair cells display modifications to the presynaptic machinery that are associated with the high-fidelity transmission of acoustic signals to the brain.

摘要

听力依赖于耳蜗毛细胞可靠和精确的神经递质传递。这些细胞对声刺激进行编码的宽动态范围和高灵敏度与一种称为突触前致密体或突触带的突触前特化有关。与突触前密度相对应,这个球形或扁平结构固定了一层突触小泡,并被认为有助于它们的胞吐融合。虽然确定毛细胞突触带的分子成分应该有助于我们理解这个突触处的神经递质释放,但由于从毛细胞中获得足够数量的起始物质进行蛋白质分析的难度,这项任务进展缓慢。我们从鸡耳蜗中分离出突触物质,用特定的免疫试剂纯化突触带,并通过串联质谱鉴定相关蛋白。带的纯化揭示了 C 末端结合蛋白的主要组成部分,特别是与可能参与将囊泡附着到带上的小 GTPase Rab3 相关的 Ribeye。与传统突触和视网膜带状突触的成分相比,我们观察到某些调节蛋白被排除在毛细胞突触之外。使用针对我们已经鉴定出的几种新型蛋白和膜运输成分的抗血清,我们记录了它们在分离的毛细胞中的定位。我们的结果表明,毛细胞的带状突触显示出与向大脑高保真传递声信号相关的突触前机制的修饰。

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