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释放位点中 Munc13-1 含量的可变性。

Variability in the Munc13-1 content of excitatory release sites.

机构信息

Laboratory of Cellular Neurophysiology, Institute of Experimental Medicine, Budapest, Hungary.

出版信息

Elife. 2021 Apr 27;10:e67468. doi: 10.7554/eLife.67468.

Abstract

The molecular mechanisms underlying the diversity of cortical glutamatergic synapses are still incompletely understood. Here, we tested the hypothesis that presynaptic active zones (AZs) are constructed from molecularly uniform, independent release sites (RSs), the number of which scales linearly with the AZ size. Paired recordings between hippocampal CA1 pyramidal cells and fast-spiking interneurons in acute slices from adult mice followed by quantal analysis demonstrate large variability in the number of RSs () at these connections. High-resolution molecular analysis of functionally characterized synapses reveals variability in the content of one of the key vesicle priming factors - Munc13-1 - in AZs that possess the same . Replica immunolabeling also shows a threefold variability in the total Munc13-1 content of AZs of identical size and a fourfold variability in the size and density of Munc13-1 clusters within the AZs. Our results provide evidence for quantitative molecular heterogeneity of RSs and support a model in which the AZ is built up from variable numbers of molecularly heterogeneous, but independent RSs.

摘要

皮质谷氨酸能突触多样性的分子机制仍不完全清楚。在这里,我们检验了这样一个假设,即突触前活性区(AZ)是由分子上均匀、独立的释放位点(RS)构建而成的,其数量与 AZ 大小呈线性比例关系。在成年小鼠的急性切片中,我们进行了海马 CA1 锥体神经元和快速放电中间神经元之间的成对记录,随后进行了量子分析,结果表明这些连接点的 RS 数量存在很大的可变性。对功能特征明确的突触进行高分辨率分子分析显示,在具有相同的 AZ 中,一种关键囊泡引发因子——Munc13-1 的含量存在可变性。复制免疫标记还显示,相同大小的 AZ 中 Munc13-1 的总含量存在三倍的可变性,而 AZ 内 Munc13-1 簇的大小和密度存在四倍的可变性。我们的结果为 RS 的定量分子异质性提供了证据,并支持这样一种模型,即 AZ 是由数量可变的分子上异质但独立的 RS 构建而成的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2da7/8116053/fe7cc2f0d0a7/elife-67468-fig1.jpg

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