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特定的突触优先在新皮层中的姐妹兴奋性神经元之间形成。

Specific synapses develop preferentially among sister excitatory neurons in the neocortex.

作者信息

Yu Yong-Chun, Bultje Ronald S, Wang Xiaoqun, Shi Song-Hai

机构信息

Developmental Biology Program, Memorial Sloan Kettering Cancer Centre, 1275 York Avenue, USA.

出版信息

Nature. 2009 Mar 26;458(7237):501-4. doi: 10.1038/nature07722. Epub 2009 Feb 8.

Abstract

Neurons in the mammalian neocortex are organized into functional columns. Within a column, highly specific synaptic connections are formed to ensure that similar physiological properties are shared by neuron ensembles spanning from the pia to the white matter. Recent studies indicate that synaptic connectivity in the neocortex is sparse and highly specific to allow even adjacent neurons to convey information independently. How this fine-scale microcircuit is constructed to create a functional columnar architecture at the level of individual neurons largely remains a mystery. Here we investigate whether radial clones of excitatory neurons arising from the same mother cell in the developing neocortex serve as a substrate for the formation of this highly specific microcircuit. We labelled ontogenetic radial clones of excitatory neurons in the mouse neocortex by in utero intraventricular injection of enhanced green fluorescent protein (EGFP)-expressing retroviruses around the onset of the peak phase of neocortical neurogenesis. Multiple-electrode whole-cell recordings were performed to probe synapse formation among these EGFP-labelled sister excitatory neurons in radial clones and the adjacent non-siblings during postnatal stages. We found that radially aligned sister excitatory neurons have a propensity for developing unidirectional chemical synapses with each other rather than with neighbouring non-siblings. Moreover, these synaptic connections display the same interlaminar directional preference as those observed in the mature neocortex. These results indicate that specific microcircuits develop preferentially within ontogenetic radial clones of excitatory neurons in the developing neocortex and contribute to the emergence of functional columnar microarchitectures in the mature neocortex.

摘要

哺乳动物新皮层中的神经元被组织成功能柱。在一个柱内,会形成高度特异的突触连接,以确保从软脑膜到白质的神经元群体共享相似的生理特性。最近的研究表明,新皮层中的突触连接是稀疏且高度特异的,甚至相邻的神经元也能独立传递信息。这种精细尺度的微电路是如何构建的,从而在单个神经元水平上形成功能性柱状结构,在很大程度上仍是一个谜。在这里,我们研究了发育中的新皮层中源自同一母细胞的兴奋性神经元的放射状克隆是否作为形成这种高度特异微电路的基础。我们通过在新皮层神经发生高峰期开始时,经子宫内脑室注射表达增强型绿色荧光蛋白(EGFP)的逆转录病毒,标记了小鼠新皮层中兴奋性神经元的个体发育放射状克隆。在出生后阶段,进行多电极全细胞记录,以探测这些EGFP标记的放射状克隆中的姐妹兴奋性神经元之间以及相邻的非姐妹神经元之间的突触形成。我们发现,径向排列的姐妹兴奋性神经元倾向于彼此之间而非与相邻的非姐妹神经元形成单向化学突触。此外,这些突触连接表现出与成熟新皮层中观察到的相同的层间方向偏好。这些结果表明,特定的微电路在发育中的新皮层兴奋性神经元的个体发育放射状克隆内优先发育,并有助于成熟新皮层中功能性柱状微结构的出现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9768/2727717/d345873143d8/nihms103050f1.jpg

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