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肌红蛋白融合蛋白:标记毛细胞突触带的新型工具。

Ribeye a-mCherry fusion protein: a novel tool for labeling synaptic ribbons of the hair cell.

机构信息

Department of Otolaryngology-Head and Neck Surgery, Case Western Reserve University School of Medicine, Cleveland, OH 44106, USA.

出版信息

J Neurosci Methods. 2011 Apr 30;197(2):274-8. doi: 10.1016/j.jneumeth.2010.11.011. Epub 2011 Feb 18.

Abstract

Synaptic ribbons are presynaptic cytomatrices that are required for efficient transfer of auditory information from hair cells to the central nervous system. In the hair cell, each electron-dense ribbon tethers numerous synaptic vesicles by fine filaments. The ribbon generally resides juxtaposed to the active zone plasma membrane. A dearth of appropriate tools to visualize the ribbon synapse has limited our knowledge of its development. Here we present the design and implementation of a method to visualize synaptic ribbons in hair cells. This scheme uses a tagged version of the protein Ribeye a, which is specific to ribbons. We generate the DNA construct Tg(pvalb3b:ribeye a-mCherry) to transgenically express the fusion protein Ribeye a-mCherry in zebrafish hair cells. The fusion protein localizes to the basolateral surface of the hair cell with a pattern similar to that of a hair cell labeled with an antiserum that recognizes ribeye proteins. Moreover, using this antiserum to label transgenics that express Ribeye a-mCherry, we demonstrate that the fusion protein and antibody-associated fluorescent signals overlap. In addition, ribbons labeled with the fusion protein are proximal to afferent nerve endings. Finally, the fusion protein labels hair-cell ribbons of zebrafish at different developmental time points. These findings indicate that the fusion protein is an effective tool to label ribbons in live and fixed hair cells, which will make it useful in the study of ribbon synapse development and to characterize zebrafish mutants with defects in synapse formation.

摘要

突触带是一种突触细胞基质,对于将听觉信息从毛细胞有效地传递到中枢神经系统是必需的。在毛细胞中,每个电子致密的带状物通过细纤维系住许多突触小泡。带状物通常与活性区质膜并列。由于缺乏适当的工具来可视化带状突触,因此我们对其发育的了解受到限制。在这里,我们提出了一种可视化毛细胞中突触带的方法的设计和实现。该方案使用了一种标记的 Ribeye a 蛋白,它是特异性的带蛋白。我们生成了 DNA 构建体 Tg(pvalb3b:ribeye a-mCherry),以在斑马鱼毛细胞中转基因表达融合蛋白 Ribeye a-mCherry。融合蛋白定位于毛细胞的基底外侧表面,其模式与识别 Ribeye 蛋白的抗血清标记的毛细胞相似。此外,使用该抗血清标记表达 Ribeye a-mCherry 的转基因,我们证明融合蛋白和抗体相关的荧光信号重叠。此外,用融合蛋白标记的带状物靠近传入神经末梢。最后,融合蛋白标记了不同发育时间点的斑马鱼毛细胞的带状物。这些发现表明,融合蛋白是一种在活细胞和固定毛细胞中标记带状物的有效工具,这将使其在研究带状突触发育和表征具有突触形成缺陷的斑马鱼突变体方面非常有用。

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