首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Deep Learning-Assisted High-Throughput Analysis of Freeze-Fracture Replica Images Applied to Glutamate Receptors and Calcium Channels at Hippocampal Synapses
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Deep Learning-Assisted High-Throughput Analysis of Freeze-Fracture Replica Images Applied to Glutamate Receptors and Calcium Channels at Hippocampal Synapses

机译:应用于海马突触谷氨酸受体和钙通道的冷冻骨折复制品图像的深度学习辅助高通量分析

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摘要

The molecular anatomy of synapses defines their characteristics in transmission and plasticity. Precise measurements of the number and distribution of synaptic proteins are important for our understanding of synapse heterogeneity within and between brain regions. Freeze–fracture replica immunogold electron microscopy enables us to analyze them quantitatively on a two-dimensional membrane surface. Here, we introduce Darea software, which utilizes deep learning for analysis of replica images and demonstrate its usefulness for quick measurements of the pre- and postsynaptic areas, density and distribution of gold particles at synapses in a reproducible manner. We used Darea for comparing glutamate receptor and calcium channel distributions between hippocampal CA3-CA1 spine synapses on apical and basal dendrites, which differ in signaling pathways involved in synaptic plasticity. We found that apical synapses express a higher density of α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptors and a stronger increase of AMPA receptors with synaptic size, while basal synapses show a larger increase in N-methyl-D-aspartate (NMDA) receptors with size. Interestingly, AMPA and NMDA receptors are segregated within postsynaptic sites and negatively correlated in density among both apical and basal synapses. In the presynaptic sites, Cav2.1 voltage-gated calcium channels show similar densities in apical and basal synapses with distributions consistent with an exclusion zone model of calcium channel-release site topography.
机译:突触的分子解剖结构定义了它们在传输和可塑性方面的特性。突触蛋白的数量和分布的精确测量对于我们对大脑区域内和之间的突触异质性的理解是重要的。冷冻骨折复制品免疫电解电子显微镜使我们能够定量地分析在二维膜表面上。在这里,我们介绍了DareA软件,该软件利用深度学习来分析复制图像,并证明其在可再现的方式以可再现的方式在突触处快速测量金颗粒的快速测量。我们使用DareA比较谷氨酸受体和钙通道分布在海马CA3-CA1脊柱突触之间的顶端和基底枝曲曲,这在突触塑性中的信号传导途径不同。我们发现顶面突触表达较高密度的α-氨基-3-羟基-5-甲基-4异恶唑丙酸(AMPA)受体,并且具有突触尺寸的淋巴瘤受体的较强增加,而基础突触显示出较大的增加 - 甲基-D-天冬氨酸(NMDA)具有尺寸的受体。有趣的是,AMPA和NMDA受体在突触突出位点被隔离,并且在顶端和基础突触中的密度密度负相关。在突触前位点,Cav2.1电压门控钙通道在顶端和基础突触中显示出类似的密度,其具有与钙通道释放场地地形的排除区模型一致的分布。

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