Saito Y, Song W J, Murakami F
Department of Biophysical Engineering, Faculty of Engineering Science, Osaka University, Toyonaka, Osaka 560, Japan.
J Neurosci. 1997 Nov 15;17(22):8792-803. doi: 10.1523/JNEUROSCI.17-22-08792.1997.
The formation of synaptic contacts is a crucial event during neural development and is thought to be achieved by complex interactions between incoming axons and the neurons in the target. We have focused on spine-like dendritic protrusions (SLDPs), which are transient pleomorphic protrusive structures seen in developing brains. Although the functional significance of SLDPs remains unknown, accumulating in vitro evidence suggests that the SLDP plays an important role in synaptogenetic interactions with axons. As a test of this idea, the present study was performed to examine whether the SLDPs are the preferential sites of synapse formation in vivo. The ultrastructure of biocytin-labeled corticorubral (CR) terminals was examined in serial thin sections during the period of synaptogenesis in newborn cats. We found that a major proportion (86%) of the CR synapses was formed on SLDPs. The presynaptic terminals were often invaginated by fine processes extending from the tips of SLDPs. Synaptic structures presumably of cortical origin were also found on SLDPs of HRP-labeled rubrospinal cells, suggesting that SLDPs postsynaptic to labeled CR terminals originate at least in part from rubrospinal cells. Taken together, these results indicate that SLDPs may represent preferred sites of synapse formation and support the notion that SLDPs play a role in synaptogenic interactions during brain development.
突触连接的形成是神经发育过程中的一个关键事件,被认为是由传入轴突与靶神经元之间的复杂相互作用实现的。我们专注于棘状树突突起(SLDPs),这是在发育中的大脑中看到的短暂的多形性突出结构。尽管SLDPs的功能意义尚不清楚,但越来越多的体外证据表明,SLDPs在与轴突的突触发生相互作用中起重要作用。作为对这一观点的检验,本研究旨在检查SLDPs是否是体内突触形成的优先部位。在新生猫突触发生期间,对连续薄切片中生物素标记的皮质红核(CR)终末的超微结构进行了检查。我们发现,大部分(86%)的CR突触形成于SLDPs上。突触前终末常常被从SLDPs尖端延伸出的细突起内陷。在HRP标记的红核脊髓细胞的SLDPs上也发现了可能起源于皮质的突触结构,这表明标记的CR终末的突触后SLDPs至少部分起源于红核脊髓细胞。综上所述,这些结果表明,SLDPs可能代表突触形成的优先部位,并支持SLDPs在大脑发育过程中的突触发生相互作用中起作用的观点。