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高内涵成像技术在突触前装配中的应用。

High-content imaging of presynaptic assembly.

机构信息

Neuroscience and Behavioral Disorders Program, Duke-NUS Graduate Medical School , Singapore, Singapore.

National University of Singapore Singapore, Singapore.

出版信息

Front Cell Neurosci. 2014 Mar 3;8:66. doi: 10.3389/fncel.2014.00066. eCollection 2014.

Abstract

Presynaptic assembly involves the specialization of a patch of axonal membrane into a complex structure that supports synaptic vesicle exocytosis and neurotransmitter release. In mammalian neurons, presynaptic assembly is widely studied in a co-culture assay, where a synaptogenic cue expressed at the surface of a heterologous cell induces presynaptic differentiation in a contacting axon. This assay has led to the discovery of numerous synaptogenic proteins, but has not been used to probe neuronal mechanisms regulating presynaptic induction. The identification of regulatory pathways that fine-tune presynaptic assembly is hindered by the lack of adequate tools to quantitatively image this process. Here, we introduce an image-processing algorithm that identifies presynaptic clusters in mammalian co-cultures and extracts a range of synapse-specific parameters. Using this software, we assessed the intrinsic variability of this synaptic induction assay and probed the effect of eight neuronal microRNAs on presynaptic assembly. Our analysis revealed a novel role for miR-27b in augmenting the density of presynaptic clusters. Our software is applicable to a wide range of synaptic induction protocols (including spontaneous synaptogenesis observed in neuron cultures) and is a valuable tool to determine the subtle impact of disease-associated genes on presynaptic assembly.

摘要

突触前装配涉及到轴突膜的特定区域特化为支持突触小泡胞吐和神经递质释放的复杂结构。在哺乳动物神经元中,突触前装配在共培养测定中被广泛研究,其中异源细胞表面表达的突触发生信号诱导接触轴突中的突触前分化。该测定法导致了许多突触发生蛋白的发现,但尚未用于探究调节突触前诱导的神经元机制。调节突触前装配的精细调控途径的鉴定受到缺乏定量成像此过程的适当工具的阻碍。在这里,我们引入了一种图像处理算法,该算法可识别哺乳动物共培养物中的突触前簇并提取一系列突触特异性参数。使用该软件,我们评估了该突触诱导测定的固有变异性,并探究了八种神经元 microRNA 对突触前装配的影响。我们的分析揭示了 miR-27b 在增强突触前簇密度方面的新作用。我们的软件适用于广泛的突触诱导方案(包括神经元培养中观察到的自发突触发生),是确定与疾病相关的基因对突触前装配的细微影响的有价值的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d908/3939450/e435974ad7ac/fncel-08-00066-g0001.jpg

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