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发育中小鼠视觉皮层中与抑制性神经元的突触连接重排。

Rearrangement of synaptic connections with inhibitory neurons in developing mouse visual cortex.

作者信息

Yamashita Akiko, Valkova Katia, Gonchar Yuri, Burkhalter Andreas

机构信息

Department of Anatomy and Neurobiology, Washington University School of Medicine, St Louis, Missouri 63110, USA.

出版信息

J Comp Neurol. 2003 Sep 29;464(4):426-37. doi: 10.1002/cne.10810.

Abstract

Cortical inhibition is determined in part by the organization of synaptic inputs to gamma-aminobutyric acidergic (GABAergic) neurons. In adult rat visual cortex, feedforward (FF) and feedback (FB) connections that link lower with higher areas provide approximately 10% of inputs to parvalbumin (PV)-expressing GABAergic neurons and approximately 90% to non-GABAergic cells (Gonchar and Burkhalter [1999] J. Comp. Neurol. 406:346-360). Although the proportions of these targets are similar in both pathways, FF synapses prefer larger PV dendrites than FB synapses, which may result in stronger inhibition in the FF than in the FB pathway (Gonchar and Burkhalter [1999] J. Comp. Neurol. 406:346-360). To determine when during postnatal (P) development FF and FB inputs to PV and non-PV neurons acquire mature proportions, and whether the pathway-specific distributions of FF and FB inputs to PV dendrites develop from a similar pattern, we studied FF and FB connections between area 17 and the higher order lateromedial area (LM) in visual cortex of P15-42 mice. We found that the innervation ratio of PV and non-PV neurons is mature at P15. Furthermore, the size distributions of PV dendrites contacted by FF and FB synapses were similar at P15 but changed during the third to sixth postnatal weeks so that, by P36-42, FF inputs preferred thick dendrites and FB synapses favored thin PV dendrites. These results suggest that distinct FF and FB circuits develop after eye opening by rearranging the distribution of excitatory synaptic inputs on the dendritic tree of PV neurons. The purpose of this transformation may be to adjust differentially the strengths of inhibition in FF and FB circuits.

摘要

皮质抑制部分取决于γ-氨基丁酸能(GABA能)神经元的突触输入组织。在成年大鼠视觉皮层中,连接低级和高级区域的前馈(FF)和反馈(FB)连接分别为表达小白蛋白(PV)的GABA能神经元提供约10%的输入,为非GABA能细胞提供约90%的输入(Gonchar和Burkhalter [1999]《比较神经学杂志》406:346 - 360)。尽管这两条通路中这些靶点的比例相似,但FF突触比FB突触更喜欢较大的PV树突,这可能导致FF通路中的抑制比FB通路更强(Gonchar和Burkhalter [1999]《比较神经学杂志》406:346 - 360)。为了确定出生后(P)发育期间PV和非PV神经元的FF和FB输入何时获得成熟比例,以及FF和FB输入到PV树突的通路特异性分布是否从相似模式发展而来,我们研究了P15 - 42小鼠视觉皮层中17区与高阶外侧内侧区(LM)之间的FF和FB连接。我们发现PV和非PV神经元的支配比例在P15时已成熟。此外,FF和FB突触接触的PV树突的大小分布在P15时相似,但在出生后第三至六周发生了变化,以至于到P36 - 42时,FF输入更喜欢粗树突,而FB突触更喜欢细的PV树突。这些结果表明,在睁眼后,通过重新排列PV神经元树突上兴奋性突触输入的分布,不同的FF和FB回路得以发育。这种转变的目的可能是差异性地调节FF和FB回路中抑制的强度。

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