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纳米生理学方法揭示斑马鱼视网膜双极带状突触中钙微区的多样性。

Nanophysiology Approach Reveals Diversity in Calcium Microdomains across Zebrafish Retinal Bipolar Ribbon Synapses.

作者信息

Rameshkumar Nirujan, Shrestha Abhishek P, Boff Johane M, Hoon Mrinalini, Matveev Victor, Zenisek David, Vaithianathan Thirumalini

出版信息

bioRxiv. 2025 Jun 27:2024.11.01.617078. doi: 10.1101/2024.11.01.617078.

Abstract

Rapid and high local calcium (Ca ) signals are essential for triggering neurotransmitter release from presynaptic terminals. In specialized bipolar ribbon synapses of the retina, these local Ca signals control multiple processes, including the priming, docking, and translocation of vesicles on the ribbon before exocytosis, endocytosis, and the replenishment of release-ready vesicles to the fusion sites for sustained neurotransmission. However, our knowledge about Ca signals along the axis of the ribbon active zone is limited. Here, we used fast confocal quantitative dual-color ratiometric line-scan imaging of a fluorescently labeled ribbon binding peptide and Ca indicators to monitor the spatial and temporal aspects of Ca transients of individual ribbon active zones in zebrafish retinal rod bipolar cells (RBCs). We observed that a Ca transient elicited a much greater fluorescence amplitude when the Ca indicator was conjugated to a ribeye-binding peptide than when using a soluble Ca indicator, and the estimated Ca levels at the ribbon active zone exceeded 26 μM in response to a 10-millisecond stimulus, as measured by a ribbon-bound low-affinity Ca indicator. Our quantitative modeling of Ca diffusion and buffering is consistent with this estimate and provides a detailed view of the spatiotemporal [Ca ] dynamics near the ribbon. Importantly, our data demonstrates that the local Ca levels may vary between ribbons of different RBCs and within the same cells. The variation in local Ca signals is found to correlate with ribbon size and active zone extent. Our serial electron microscopy results provide new information about the heterogeneity in ribbon size, shape, and area of the ribbon in contact with the plasma membrane.

摘要

快速且强烈的局部钙(Ca )信号对于触发神经递质从突触前终末释放至关重要。在视网膜特化的双极带状突触中,这些局部钙信号控制多个过程,包括在胞吐作用、内吞作用之前囊泡在带状物上的准备、对接和转运,以及将可释放囊泡补充到融合位点以维持神经传递。然而,我们对沿着带状活性区轴的钙信号的了解有限。在这里,我们使用荧光标记的带状结合肽和钙指示剂的快速共聚焦定量双色比率线扫描成像,来监测斑马鱼视网膜视杆双极细胞(RBCs)中单个带状活性区钙瞬变的空间和时间方面。我们观察到,当钙指示剂与视黄醛结合蛋白结合肽偶联时,钙瞬变引发的荧光幅度比使用可溶性钙指示剂时大得多,并且通过结合在带状物上的低亲和力钙指示剂测量,在10毫秒刺激下,带状活性区的估计钙水平超过26μM。我们对钙扩散和缓冲的定量建模与这一估计一致,并提供了带状物附近时空[Ca ]动态的详细视图。重要的是,我们的数据表明,不同RBCs的带状物之间以及同一细胞内的局部钙水平可能会有所不同。发现局部钙信号的变化与带状物大小和活性区范围相关。我们的连续电子显微镜结果提供了关于带状物大小、形状以及与质膜接触的带状物面积异质性的新信息。

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