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发育转录因子 Fezf2 的表达在成熟小鼠运动皮层中鉴定出一个独特的层 5 内脑投射神经元亚群。

Expression of the developmental transcription factor Fezf2 identifies a distinct subpopulation of layer 5 intratelencephalic-projection neurons in mature mouse motor cortex.

机构信息

Departments of Physiology and Biochemistry, Brain Health Research Centre, Otago School of Medical Sciences, University of Otago, Dunedin, New Zealand 9016.

出版信息

J Neurosci. 2014 Mar 19;34(12):4303-8. doi: 10.1523/JNEUROSCI.3111-13.2014.

Abstract

The transcription factor encoded by Fez family zinc finger 2 (Fezf2) is necessary for normal development of the cerebral cortex. However, Fezf2 continues to be expressed in the mature brain, indicating that it might also be necessary for cortical function throughout life. Here, we show a unique identity of Fezf2-expressing intratelencephalic-projection neurons (IT-PNs) in layer 5 of the mature mouse motor cortex, using a Fezf2-Gfp reporter mouse, in vivo retrograde labeling, whole-cell electrophysiology with morphology reconstruction, and cluster analysis. Fezf2-expressing IT-PNs occupy layer 5A and display an apical dendritic tuft; functionally, they fire broad, adapting action potentials and exhibit an Ih-mediated voltage sag that influences their synaptic properties. In contrast, IT-PNs without Fezf2 expression mainly occupy layer 5B, do not display a tuft, and exhibit regular action potential firing and little sag. Both groups of IT-PNs demonstrated distinct frequency-selective synaptic responses to commissural inputs, indicating unique contributions within the cortical microcircuitry. Our findings establish a new, distinct physiological identity of Fezf2-expressing neurons within mature motor cortex.

摘要

Fez 家族锌指蛋白 2(Fezf2)编码的转录因子对于大脑皮层的正常发育是必需的。然而,Fezf2 在成熟的大脑中继续表达,表明它在整个生命过程中对于皮质功能也可能是必需的。在这里,我们使用 Fezf2-Gfp 报告小鼠、体内逆行标记、全细胞电生理学和形态重建以及聚类分析,展示了成熟小鼠运动皮层第 5 层中表达 Fezf2 的内放射状投射神经元(IT-PNs)的独特特征。表达 Fezf2 的 IT-PNs 占据第 5 层 A 区并显示出一个顶端树突丛;从功能上看,它们产生宽阔的、适应的动作电位,并表现出 Ih 介导的电压凹陷,这影响了它们的突触特性。相比之下,不表达 Fezf2 的 IT-PNs 主要占据第 5 层 B 区,不显示树突丛,并且表现出规则的动作电位发放和很少的凹陷。两组 IT-PNs 对连合输入都表现出独特的频率选择性突触反应,表明在皮质微电路中具有独特的贡献。我们的发现确立了成熟运动皮层中表达 Fezf2 的神经元的新的、独特的生理特征。

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