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人类的“耳蜗电池”——耳蜗外侧壁中的Claudin-11屏障与离子转运蛋白

The Human "Cochlear Battery" - Claudin-11 Barrier and Ion Transport Proteins in the Lateral Wall of the Cochlea.

作者信息

Liu Wei, Schrott-Fischer Annelies, Glueckert Rudolf, Benav Heval, Rask-Andersen Helge

机构信息

Department of Surgical Sciences, Section of Otolaryngology, Uppsala University HospitalUppsala, Sweden.

Department of Otolaryngology, Medical University of InnsbruckInnsbruck, Austria.

出版信息

Front Mol Neurosci. 2017 Aug 10;10:239. doi: 10.3389/fnmol.2017.00239. eCollection 2017.

Abstract

The cochlea produces an electric field potential essential for hair cell transduction and hearing. This biological "battery" is situated in the lateral wall of the cochlea and contains molecular machinery that secretes and recycles K ions. Its functioning depends on junctional proteins that restrict the para-cellular escape of ions. The tight junction protein Claudin-11 has been found to be one of the major constituents of this barrier that maintains ion gradients (Gow et al., 2004; Kitajiri et al., 2004a). We are the first to elucidate the human Claudin-11 framework and the associated ion transport machinery using super-resolution fluorescence illumination microscopy (SR-SIM). Archival cochleae obtained during meningioma surgery were used for SR-SIM together with transmission electron microscopy after ethical consent. Claudin-11-expressing cells formed parallel tight junction lamellae that insulated the epithelial syncytium of the stria vascularis and extended to the suprastrial region. Intercellular gap junctions were found between the barrier cells and fibrocytes. Transmission electron microscopy, confocal microscopy and SR-SIM revealed exclusive cell specialization in the various subdomains of the lateral wall of the human cochlea. The Claudin-11-expressing cells exhibited both conductor and isolator characteristics, and these micro-porous separators may selectively mediate the movement of charged units to the intrastrial space in a manner that is analogous to a conventional electrochemical "battery." The function and relevance of this battery for the development of inner ear disease are discussed.

摘要

耳蜗产生一种对毛细胞转导和听力至关重要的电场电位。这种生物“电池”位于耳蜗的侧壁,包含分泌和回收钾离子的分子机制。其功能取决于限制离子细胞旁逸出的连接蛋白。紧密连接蛋白Claudin-11已被发现是维持离子梯度的这一屏障的主要成分之一(Gow等人,2004年;Kitajiri等人,2004a)。我们首次使用超分辨率荧光照明显微镜(SR-SIM)阐明了人类Claudin-11框架及相关的离子转运机制。在获得伦理同意后,将脑膜瘤手术期间获取的存档耳蜗用于SR-SIM以及透射电子显微镜检查。表达Claudin-11的细胞形成平行的紧密连接薄片,使血管纹的上皮合胞体绝缘并延伸至纹上区域。在屏障细胞和纤维细胞之间发现了细胞间缝隙连接。透射电子显微镜、共聚焦显微镜和SR-SIM揭示了人类耳蜗侧壁各个亚区域的独特细胞特化。表达Claudin-11的细胞表现出导体和绝缘体的特性,并且这些微孔分隔物可能以类似于传统电化学“电池”的方式选择性地介导带电单元向纹内空间的移动。本文讨论了这种“电池”的功能及其与内耳疾病发生发展的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6bb/5554435/5659f689338a/fnmol-10-00239-g001.jpg

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