Dufour Amandine, Rollenhagen Astrid, Sätzler Kurt, Lübke Joachim H R
Institute of Neuroscience and Medicine INM-2, Research Centre Jülich GmbH, Jülich 52425, Germany.
Institute of Anatomy II, Medical Faculty, Heinrich-Heine University Düsseldorf, Düsseldorf 40225, Germany.
Cereb Cortex. 2016 Feb;26(2):838-854. doi: 10.1093/cercor/bhv270. Epub 2015 Nov 15.
Understanding the structural and functional mechanisms underlying the development of individual brain microcircuits is critical for elucidating their computational properties. As synapses are the key structures defining a given microcircuit, it is imperative to investigate their development and precise structural features. Here, synapses in cortical layer 4 were analyzed throughout the first postnatal month using high-end electron microscopy to generate realistic quantitative 3D models. Besides their overall geometry, the size of active zones and the pools of synaptic vesicles were analyzed. At postnatal day 2 only a few shaft synapses were found, but spine synapses steadily increased with ongoing corticogenesis. From postnatal day 2 to 30 synaptic boutons significantly decreased in size whereas that of active zones remained nearly unchanged despite a reshaping. During the first 2 weeks of postnatal development, a rearrangement of synaptic vesicles from a loose distribution toward a densely packed organization close to the presynaptic density was observed, accompanied by the formation of, first a putative readily releasable pool and later a recycling and reserve pool. The quantitative 3D reconstructions of synapses will enable the comparison of structural and functional aspects of signal transduction thus leading to a better understanding of networks in the developing neocortex.
了解个体脑微电路发育背后的结构和功能机制对于阐明其计算特性至关重要。由于突触是定义特定微电路的关键结构,因此研究其发育和精确的结构特征势在必行。在这里,使用高端电子显微镜在出生后的第一个月对皮质第4层的突触进行了分析,以生成逼真的定量三维模型。除了它们的整体几何形状外,还分析了活性区的大小和突触小泡池。在出生后第2天,仅发现少数轴突突触,但随着皮质发生的进行,棘突触稳步增加。从出生后第2天到第30天,突触终扣的大小显著减小,而活性区的大小尽管发生了重塑但几乎保持不变。在出生后发育的前两周内,观察到突触小泡从松散分布重新排列为靠近突触前密度的紧密堆积组织,同时首先形成一个假定的易释放池,随后形成一个循环和储备池。突触的定量三维重建将能够比较信号转导的结构和功能方面,从而更好地理解发育中的新皮层中的网络。