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NMJ-morph reveals principal components of synaptic morphology influencing structure–function relationships at the neuromuscular junction

机译:NMJ形态揭示了突触形态的主要成分影响神经肌肉连接处的结构-功能关系

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摘要

The ability to form synapses is one of the fundamental properties required by the mammalian nervous system to generate network connectivity. Structural and functional diversity among synaptic populations is a key hallmark of network diversity, and yet we know comparatively little about the morphological principles that govern variability in the size, shape and strength of synapses. Using the mouse neuromuscular junction (NMJ) as an experimentally accessible model synapse, we report on the development of a robust, standardized methodology to facilitate comparative morphometric analysis of synapses (‘NMJ-morph’). We used NMJ-morph to generate baseline morphological reference data for 21 separate pre- and post-synaptic variables from 2160 individual NMJs belonging to nine anatomically distinct populations of synapses, revealing systematic differences in NMJ morphology between defined synaptic populations. Principal components analysis revealed that overall NMJ size and the degree of synaptic fragmentation, alongside pre-synaptic axon diameter, were the most critical parameters in defining synaptic morphology. ‘Average’ synaptic morphology was remarkably conserved between comparable synapses from the left and right sides of the body. Systematic differences in synaptic morphology predicted corresponding differences in synaptic function that were supported by physiological recordings, confirming the robust relationship between synaptic size and strength.
机译:形成突触的能力是哺乳动物神经系统产生网络连通性所需的基本特性之一。突触种群之间的结构和功能多样性是网络多样性的关键标志,但我们对控制突触大小,形状和强度变异性的形态学原理知之甚少。我们使用小鼠神经肌肉接头(NMJ)作为实验可访问的模型突触,报告了稳健的标准化方法的发展,以促进突触(NMJ-morph)的比较形态计量学分析。我们使用NMJ形态来生成来自2160个单独的NMJ的21个独立的突触前和突触后变量的基线形态学参考数据,这些变量属于9个在解剖学上不同的突触群体,揭示了已定义突触群体之间NMJ形态的系统差异。主成分分析显示,整体NMJ大小和突触破碎程度以及突触前轴突直径是定义突触形态的最关键参数。在身体左右两侧可比较的突触之间,“平均”突触形态显着保守。突触形态的系统差异预测了生理记录所支持的突触功能的相应差异,从而证实了突触大小与强度之间的牢固关系。

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