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突触棘是兴奋性突触前终扣大小和强度的可靠指标,是海马体CA1区兴奋性突触的普遍组成部分。

Synaptic spinules are reliable indicators of excitatory presynaptic bouton size and strength and are ubiquitous components of excitatory synapses in CA1 hippocampus.

作者信息

Gore Ashley, Yurina Amaliya, Yukevich-Mussomeli Anastasia, Nahmani Marc

机构信息

Division of Sciences and Mathematics, School of Interdisciplinary Arts and Sciences, University of Washington Tacoma, Tacoma, WA, United States.

出版信息

Front Synaptic Neurosci. 2022 Aug 11;14:968404. doi: 10.3389/fnsyn.2022.968404. eCollection 2022.

Abstract

Synaptic spinules are thin, finger-like projections from one neuron that become embedded within the presynaptic or postsynaptic compartments of another neuron. While spinules are conserved features of synapses across the animal kingdom, their specific function(s) remain unknown. Recent focused ion beam scanning electron microscopy (FIB-SEM) image volume analyses have demonstrated that spinules are embedded within ∼25% of excitatory boutons in primary visual cortex, yet the diversity of spinule sizes, origins, and ultrastructural relationships to their boutons remained unclear. To begin to uncover the function of synaptic spinules, we sought to determine the abundance, origins, and 3D ultrastructure of spinules within excitatory presynaptic spinule-bearing boutons (SBBs) in mammalian CA1 hippocampus and compare them with presynaptic boutons bereft of spinules (non-SBBs). Accordingly, we performed a comprehensive 3D analysis of every excitatory presynaptic bouton, their embedded spinules, and postsynaptic densities, within a 5 nm isotropic FIB-SEM image volume from CA1 hippocampus of an adult male rat. Surprisingly, we found that ∼74% of excitatory presynaptic boutons in this volume contained at least one spinule, suggesting they are fundamental components of excitatory synapses in CA1. In addition, we found that SBBs are 2.5-times larger and have 60% larger postsynaptic densities (PSDs) than non-SBBs. Moreover, synaptic spinules within SBBs are clearly differentiated into two groups: small clathrin-coated spinules, and 29-times larger spinules without clathrin. Together, these findings suggest that the presence of a spinule is a marker for stronger and more stable presynaptic boutons in CA1, and that synaptic spinules serve at least two separable and distinct functions.

摘要

突触小棘是一种从一个神经元发出的细长的指状突起,可嵌入另一个神经元的突触前或突触后区域。虽然小棘是整个动物界突触的保守特征,但其具体功能仍不清楚。最近的聚焦离子束扫描电子显微镜(FIB-SEM)图像体积分析表明,小棘嵌入初级视觉皮层约25%的兴奋性突触小体中,然而小棘大小、起源及其与突触小体的超微结构关系的多样性仍不清楚。为了开始揭示突触小棘的功能,我们试图确定哺乳动物CA1海马体中兴奋性突触前含小棘突触小体(SBBs)内小棘的丰度、起源和三维超微结构,并将它们与没有小棘的突触前小体(非SBBs)进行比较。因此,我们对成年雄性大鼠CA1海马体的一个5纳米各向同性FIB-SEM图像体积内的每个兴奋性突触前小体、其嵌入的小棘和突触后致密物进行了全面的三维分析。令人惊讶的是,我们发现该体积内约74%的兴奋性突触前小体至少含有一个小棘,这表明它们是CA1兴奋性突触的基本组成部分。此外,我们发现SBBs比非SBBs大2.5倍,突触后致密物(PSDs)大60%。此外,SBBs内的突触小棘明显分为两组:小的网格蛋白包被小棘和大29倍的无网格蛋白小棘。这些发现共同表明,小棘的存在是CA1中更强壮、更稳定的突触前小体的标志,并且突触小棘至少具有两种可分离且不同的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cce/9403541/f94f30224a79/fnsyn-14-968404-g001.jpg

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