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绘制顶端小鼠耳蜗内毛细胞带状突触发育成熟图谱。

Mapping developmental maturation of inner hair cell ribbon synapses in the apical mouse cochlea.

机构信息

Molecular Architecture of Synapses Group, Institute for Auditory Neuroscience, InnerEarLab and Center for Biostructural Imaging of Neurodegeneration, University Medical Center Göttingen, 37075 Göttingen, Germany.

Collaborative Research Center 889, University of Göttingen, 37075 Göttingen, Germany.

出版信息

Proc Natl Acad Sci U S A. 2019 Mar 26;116(13):6415-6424. doi: 10.1073/pnas.1812029116. Epub 2019 Mar 13.

Abstract

Ribbon synapses of cochlear inner hair cells (IHCs) undergo molecular assembly and extensive functional and structural maturation before hearing onset. Here, we characterized the nanostructure of IHC synapses from late prenatal mouse embryo stages (embryonic days 14-18) into adulthood [postnatal day (P)48] using electron microscopy and tomography as well as optical nanoscopy of apical turn organs of Corti. We find that synaptic ribbon precursors arrive at presynaptic active zones (AZs) after afferent contacts have been established. These ribbon precursors contain the proteins RIBEYE and piccolino, tether synaptic vesicles and their delivery likely involves active, microtubule-based transport pathways. Synaptic contacts undergo a maturational transformation from multiple small to one single, large AZ. This maturation is characterized by the fusion of ribbon precursors with membrane-anchored ribbons that also appear to fuse with each other. Such fusion events are most frequently encountered around P12 and hence, coincide with hearing onset in mice. Thus, these events likely underlie the morphological and functional maturation of the AZ. Moreover, the postsynaptic densities appear to undergo a similar refinement alongside presynaptic maturation. Blockwise addition of ribbon material by fusion as found during AZ maturation might represent a general mechanism for modulating ribbon size.

摘要

耳蜗内毛细胞 (IHC) 的带状突触在听觉出现之前经历分子组装和广泛的功能和结构成熟。在这里,我们使用电子显微镜和断层扫描以及耳蜗顶部器官的光学纳米显微镜,对来自晚期胚胎小鼠胚胎阶段(胚胎第 14-18 天)到成年期(出生后第 48 天)的 IHC 突触的纳米结构进行了表征。我们发现,突触带前体在传入接触建立后到达突触前活性区 (AZ)。这些带前体包含 RIBEYE 和 piccolino 蛋白,固定突触小泡,其运输可能涉及活跃的、基于微管的运输途径。突触接触经历了从多个小到一个大 AZ 的成熟转化。这种成熟的特征是带前体与膜锚定带融合,而这些带似乎也相互融合。这种融合事件最常发生在 P12 左右,因此与小鼠的听力出现相吻合。因此,这些事件可能是 AZ 形态和功能成熟的基础。此外,与突触前成熟同时,突触后密度似乎也经历了类似的细化。在 AZ 成熟过程中发现的通过融合进行的带状物质的块状添加可能代表一种调节带状大小的通用机制。

相似文献

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Maturation of Heterogeneity in Afferent Synapse Ultrastructure in the Mouse Cochlea.小鼠耳蜗传入突触超微结构异质性的成熟
Front Synaptic Neurosci. 2021 Jun 17;13:678575. doi: 10.3389/fnsyn.2021.678575. eCollection 2021.

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