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多泡体从小鼠视杆细胞释放的特性支持单光子反应的传递。

Properties of multivesicular release from mouse rod photoreceptors support transmission of single-photon responses.

机构信息

Truhlsen Eye Institute and Department of Ophthalmology and Visual Sciences, College of Medicine, University of Nebraska Medical Center, Omaha, United States.

Cellular and Integrative Physiology, Omaha, United States.

出版信息

Elife. 2021 Mar 26;10:e67446. doi: 10.7554/eLife.67446.

Abstract

Vision under starlight requires rod photoreceptors to transduce and transmit single-photon responses to the visual system. Small single-photon voltage changes must therefore cause detectable reductions in glutamate release. We found that rods achieve this by employing mechanisms that enhance release regularity and its sensitivity to small voltage changes. At the resting membrane potential in darkness, mouse rods exhibit coordinated and regularly timed multivesicular release events, each consisting of ~17 vesicles and occurring two to three times more regularly than predicted by Poisson statistics. Hyperpolarizing rods to mimic the voltage change produced by a single photon abruptly reduced the probability of multivesicular release nearly to zero with a rebound increase at stimulus offset. Simulations of these release dynamics indicate that this regularly timed, multivesicular release promotes transmission of single-photon responses to post-synaptic rod-bipolar cells. Furthermore, the mechanism is efficient, requiring lower overall release rates than uniquantal release governed by Poisson statistics.

摘要

在星光下的视觉需要视杆细胞将单光子反应转化并传递到视觉系统。因此,小的单光子电压变化必须导致谷氨酸释放的可检测减少。我们发现,视杆细胞通过采用增强释放规律性及其对小电压变化敏感性的机制来实现这一点。在黑暗中的静息膜电位下,小鼠视杆细胞表现出协调且定时的多泡释放事件,每个事件由约 17 个囊泡组成,发生的频率比泊松统计预测的要规则两倍到三倍。超极化视杆细胞以模拟单光子产生的电压变化,突然将多泡释放的概率几乎降低到零,在刺激结束时出现反弹增加。这些释放动力学的模拟表明,这种定时的、多泡的释放促进了单光子反应向突触后视杆-双极细胞的传递。此外,该机制效率高,所需的总释放速率低于泊松统计控制的单囊泡释放。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b125/8032395/51540505a5ff/elife-67446-fig1.jpg

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