Gerstmann Katrin, Pensold Daniel, Symmank Judit, Khundadze Mukhran, Hübner Christian A, Bolz Jürgen, Zimmer Geraldine
Institute of Human Genetics, Jena University Hospital, Friedrich-Schiller-University Jena, 07743 Jena, Germany Institute for General Zoology and Animal Physiology, Friedrich-Schiller-University Jena, 07743 Jena, Germany.
Institute of Human Genetics, Jena University Hospital, Friedrich-Schiller-University Jena, 07743 Jena, Germany.
Development. 2015 Jan 1;142(1):140-50. doi: 10.1242/dev.104927. Epub 2014 Dec 5.
The phenotype of excitatory cerebral cortex neurons is specified at the progenitor level, orchestrated by various intrinsic and extrinsic factors. Here, we provide evidence for a subcortical contribution to cortical progenitor regulation by thalamic axons via ephrin A5-EphA4 interactions. Ephrin A5 is expressed by thalamic axons and represents a high-affinity ligand for EphA4 receptors detected in cortical precursors. Recombinant ephrin A5-Fc protein, as well as ephrin A ligand-expressing, thalamic axons affect the output of cortical progenitor division in vitro. Ephrin A5-deficient mice show an altered division mode of radial glial cells (RGCs) accompanied by increased numbers of intermediate progenitor cells (IPCs) and an elevated neuronal production for the deep cortical layers at E13.5. In turn, at E16.5 the pool of IPCs is diminished, accompanied by reduced rates of generated neurons destined for the upper cortical layers. This correlates with extended infragranular layers at the expense of superficial cortical layers in adult ephrin A5-deficient and EphA4-deficient mice. We suggest that ephrin A5 ligands imported by invading thalamic axons interact with EphA4-expressing RGCs, thereby contributing to the fine-tuning of IPC generation and thus the proper neuronal output for cortical layers.
兴奋性大脑皮层神经元的表型在祖细胞水平就已确定,这是由多种内在和外在因素共同调控的。在此,我们提供证据表明,丘脑轴突通过ephrin A5-EphA4相互作用对皮层祖细胞的调控有皮层下的贡献。Ephrin A5由丘脑轴突表达,是在皮层前体细胞中检测到的EphA4受体的高亲和力配体。重组ephrin A5-Fc蛋白以及表达ephrin A配体的丘脑轴突在体外会影响皮层祖细胞分裂的产出。Ephrin A5基因敲除小鼠在E13.5时表现出放射状胶质细胞(RGCs)分裂模式的改变,伴随着中间祖细胞(IPCs)数量的增加以及深层皮层神经元生成的增多。反过来,在E16.5时,IPCs池减少,同时注定要进入上层皮层的神经元生成速率降低。这与成年Ephrin A5基因敲除和EphA4基因敲除小鼠中颗粒下层的扩展以及浅层皮层的减少相关。我们认为,侵入的丘脑轴突导入的Ephrin A5配体与表达EphA4的RGCs相互作用,从而有助于微调IPCs的生成,进而为皮层各层提供适当的神经元产出。