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易释放池动态调节多泡体释放。

The readily-releasable pool dynamically regulates multivesicular release.

机构信息

Department of Neurobiology, University of Alabama at Birmingham, Birmingham, United States.

Department of Fundamental and Applied Physics, Northern (Arctic) Federal University named after M.V. Lomonosov, Arkhangelsk, Russian Federation.

出版信息

Elife. 2019 Jul 31;8:e47434. doi: 10.7554/eLife.47434.

Abstract

The number of neurotransmitter-filled vesicles released into the synaptic cleft with each action potential dictates the reliability of synaptic transmission. Variability of this fundamental property provides diversity of synaptic function across brain regions, but the source of this variability is unclear. The prevailing view is that release of a single (univesicular release, UVR) or multiple vesicles (multivesicular release, MVR) reflects variability in vesicle release probability, a notion that is well-supported by the calcium-dependence of release mode. However, using mouse brain slices, we now demonstrate that the number of vesicles released is regulated by the size of the readily-releasable pool, upstream of vesicle release probability. Our results point to a model wherein protein kinase A and its vesicle-associated target, synapsin, dynamically control release site occupancy to dictate the number of vesicles released without altering release probability. Together these findings define molecular mechanisms that control MVR and functional diversity of synaptic signaling.

摘要

每个动作电位释放到突触间隙中的神经递质囊泡数量决定了突触传递的可靠性。这种基本特性的可变性为大脑区域提供了多样化的突触功能,但这种可变性的来源尚不清楚。目前的观点认为,单个囊泡(单囊泡释放,UVR)或多个囊泡(多囊泡释放,MVR)的释放反映了囊泡释放概率的可变性,这一观点得到了释放模式对钙离子依赖性的很好支持。然而,我们现在使用小鼠脑片证明,释放的囊泡数量受囊泡释放概率上游的易释放池的大小调节。我们的结果指出了一种模型,其中蛋白激酶 A 及其囊泡相关靶标突触结合蛋白,动态控制释放位点的占据,以决定释放的囊泡数量,而不改变释放概率。这些发现共同定义了控制 MVR 和突触信号功能多样性的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06b0/6716946/37260d71e079/elife-47434-fig1.jpg

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