Tantirigama Malinda L S, Oswald Manfred J, Clare Alison J, Wicky Hollie E, Day Robert C, Hughes Stephanie M, Empson Ruth M
Department of Physiology, Brain Health Research Centre, Otago School of Medical Sciences, University of Otago, Dunedin, New Zealand, 9054.
Department of Biochemistry, Brain Health Research Centre, Otago School of Medical Sciences, University of Otago, Dunedin, New Zealand, 9054.
J Comp Neurol. 2016 Mar 1;524(4):829-45. doi: 10.1002/cne.23875. Epub 2015 Aug 30.
The mature cerebral cortex contains a wide diversity of neuron phenotypes. This diversity is specified during development by neuron-specific expression of key transcription factors, some of which are retained for the life of the animal. One of these key developmental transcription factors that is also retained in the adult is Fezf2, but the neuron types expressing it in the mature cortex are unknown. With a validated Fezf2-Gfp reporter mouse, whole-cell electrophysiology with morphology reconstruction, cluster analysis, in vivo retrograde labeling, and immunohistochemistry, we identify a heterogeneous population of Fezf2(+) neurons in both layer 5A and layer 5B of the mature motor cortex. Functional electrophysiology identified two distinct subtypes of Fezf2(+) neurons that resembled pyramidal tract projection neurons (PT-PNs) and intratelencephalic projection neurons (IT-PNs). Retrograde labeling confirmed the former type to include corticospinal projection neurons (CSpPNs) and corticothalamic projection neurons (CThPNs), whereas the latter type included crossed corticostriatal projection neurons (cCStrPNs) and crossed-corticocortical projection neurons (cCCPNs). The two Fezf2(+) subtypes expressed either CTIP2 or SATB2 to distinguish their physiological identity and confirmed that specific expression combinations of key transcription factors persist in the mature motor cortex. Our findings indicate a wider role for Fezf2 within gene expression networks that underpin the diversity of layer 5 cortical projection neurons.
成熟的大脑皮层包含多种神经元表型。这种多样性在发育过程中由关键转录因子的神经元特异性表达所决定,其中一些转录因子在动物的一生中都会保留。Fezf2是在发育过程中起关键作用且在成体中也保留的转录因子之一,但在成熟皮层中表达它的神经元类型尚不清楚。利用经过验证的Fezf2-Gfp报告基因小鼠,结合全细胞膜片钳电生理记录与形态重建、聚类分析、体内逆行标记和免疫组织化学技术,我们在成熟运动皮层的5A层和5B层中鉴定出了一群异质性的Fezf2(+)神经元。功能电生理研究确定了Fezf2(+)神经元的两种不同亚型,它们分别类似于锥体束投射神经元(PT-PNs)和脑内投射神经元(IT-PNs)。逆行标记证实,前一种类型包括皮质脊髓投射神经元(CSpPNs)和皮质丘脑投射神经元(CThPNs),而后一种类型包括交叉皮质纹状体投射神经元(cCStrPNs)和交叉皮质皮质投射神经元(cCCPNs)。这两种Fezf2(+)亚型分别表达CTIP2或SATB2,以区分它们的生理特性,并证实关键转录因子的特定表达组合在成熟运动皮层中持续存在。我们的研究结果表明,Fezf2在基因表达网络中发挥着更广泛的作用,这些网络支撑着第5层皮质投射神经元的多样性。