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本文引用的文献

1
Sharp Ca²⁺ nanodomains beneath the ribbon promote highly synchronous multivesicular release at hair cell synapses.带状结构下尖锐的 Ca²⁺纳米区促进毛细胞突触处高度同步的多泡释放。
J Neurosci. 2011 Nov 16;31(46):16637-50. doi: 10.1523/JNEUROSCI.1866-11.2011.
2
Developmental acquisition of a rapid calcium-regulated vesicle supply allows sustained high rates of exocytosis in auditory hair cells.听觉毛细胞中快速钙调节囊泡供应的发育获得使胞吐作用能够维持高速率。
PLoS One. 2011;6(10):e25714. doi: 10.1371/journal.pone.0025714. Epub 2011 Oct 6.
3
The plasma membrane calcium pump in the hearing process: physiology and pathology.听觉过程中的血浆膜钙泵:生理学和病理学。
Sci China Life Sci. 2011 Aug;54(8):686-90. doi: 10.1007/s11427-011-4200-z. Epub 2011 Jul 24.
4
Acute destruction of the synaptic ribbon reveals a role for the ribbon in vesicle priming.急性破坏突触带揭示了带在囊泡引发中的作用。
Nat Neurosci. 2011 Jul 24;14(9):1135-41. doi: 10.1038/nn.2870.
5
Short-term facilitation modulates size and timing of the synaptic response at the inner hair cell ribbon synapse.短期易化调节内毛细胞带状突触的突触反应的幅度和时程。
J Neurosci. 2011 Jun 1;31(22):7974-81. doi: 10.1523/JNEUROSCI.0604-11.2011.
6
Calcium-dependent synaptic vesicle trafficking underlies indefatigable release at the hair cell afferent fiber synapse.钙依赖性突触囊泡运输是毛细胞传入纤维突触不懈释放的基础。
Neuron. 2011 Apr 28;70(2):326-38. doi: 10.1016/j.neuron.2011.01.031.
7
Recovery from short-term depression and facilitation is ultrafast and Ca2+ dependent at auditory hair cell synapses.听觉毛细胞突触的短期抑郁和易化恢复超快且依赖 Ca2+。
J Neurosci. 2011 Apr 13;31(15):5682-92. doi: 10.1523/JNEUROSCI.5453-10.2011.
8
Summing Across Different Active Zones can Explain the Quasi-Linear Ca-Dependencies of Exocytosis by Receptor Cells.跨不同活动区求和可以解释受体细胞中 Ca 依赖性准线性胞吐作用。
Front Synaptic Neurosci. 2010 Nov 25;2:148. doi: 10.3389/fnsyn.2010.00148. eCollection 2010.
9
Exocytosis at the hair cell ribbon synapse apparently operates without neuronal SNARE proteins.毛细胞带状突触的胞吐作用显然在没有神经元 SNARE 蛋白的情况下发生。
Nat Neurosci. 2011 Apr;14(4):411-3. doi: 10.1038/nn.2774. Epub 2011 Mar 6.
10
Molecular anatomy of the hair cell's ribbon synapse.毛细胞的带状突触的分子解剖结构。
J Neurosci. 2010 Sep 15;30(37):12387-99. doi: 10.1523/JNEUROSCI.1014-10.2010.

钙离子内流与带状突触处神经递质释放。

Ca(2+) influx and neurotransmitter release at ribbon synapses.

机构信息

The Vollum Institute, Oregon Health and Science University, Portland, OR 97239, USA.

出版信息

Cell Calcium. 2012 Sep-Oct;52(3-4):208-16. doi: 10.1016/j.ceca.2012.06.004. Epub 2012 Jul 8.

DOI:10.1016/j.ceca.2012.06.004
PMID:22776680
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3468149/
Abstract

Ca(2+) influx through voltage-gated Ca(2+) channels triggers the release of neurotransmitters at presynaptic terminals. Some sensory receptor cells in the peripheral auditory and visual systems have specialized synapses that express an electron-dense organelle called a synaptic ribbon. Like conventional synapses, ribbon synapses exhibit SNARE-mediated exocytosis, clathrin-mediated endocytosis, and short-term plasticity. However, unlike non-ribbon synapses, voltage-gated L-type Ca(2+) channel opening at ribbon synapses triggers a form of multiquantal release that can be highly synchronous. Furthermore, ribbon synapses appear to be specialized for fast and high throughput exocytosis controlled by graded membrane potential changes. Here we will discuss some of the basic aspects of synaptic transmission at different types of ribbon synapses, and we will emphasize recent evidence that auditory and retinal ribbon synapses have marked differences. This will lead us to suggest that ribbon synapses are specialized for particular operating ranges and frequencies of stimulation. We propose that different types of ribbon synapses transfer diverse rates of sensory information by expressing a particular repertoire of critical components, and by placing them at precise and strategic locations, so that a continuous supply of primed vesicles and Ca(2+) influx leads to fast, accurate, and ongoing exocytosis.

摘要

钙离子通过电压门控钙离子通道流入,引发神经递质在突触前末端释放。外周听觉和视觉系统中的一些感觉受体细胞具有特殊的突触,表达一种称为突触带的电子致密细胞器。与传统突触一样,带状突触表现出 SNARE 介导的胞吐作用、网格蛋白介导的内吞作用和短期可塑性。然而,与非带状突触不同,带状突触中的电压门控 L 型钙通道的打开会引发一种形式的多量子释放,这种释放可以非常同步。此外,带状突触似乎专门用于通过分级膜电位变化控制快速和高通量的胞吐作用。在这里,我们将讨论不同类型的带状突触的突触传递的一些基本方面,我们将强调听觉和视网膜带状突触的一些显著差异的最新证据。这将使我们得出结论,带状突触专门用于特定的刺激范围和频率。我们提出,不同类型的带状突触通过表达特定的关键组件库,并将其放置在精确和战略位置,从而以连续的供应被激活的囊泡和钙离子流入来实现快速、准确和持续的胞吐作用,从而传递不同速率的感觉信息。