Department of Basic Medical Sciences, Medical School, University of Bari, Piazza Giulio Cesare, 11, 70124 Bari, Italy.
Dev Biol. 2012 May 1;365(1):133-51. doi: 10.1016/j.ydbio.2012.02.011. Epub 2012 Feb 21.
The expression of the cell recognition molecule F3/Contactin (CNTN1) is generally associated with the functions of post-mitotic neurons. In the embryonic cortex, however, we find it expressed by proliferating ventricular zone (VZ) precursors. In contrast to previous findings in the developing cerebellum, F3/Contactin transgenic overexpression in the early cortical VZ promotes proliferation and expands the precursor pool at the expense of neurogenesis. At later stages, when F3/Contactin levels subside, however, neurogenesis resumes, suggesting that F3/Contactin expression in the VZ is inversely related to neurogenesis and plays a role in a feedback control mechanism, regulating the orderly progression of cortical development. The modified F3/Contactin profile therefore results in delayed corticogenesis, as judged by downregulation in upper and lower layer marker expression and by BrdU birth dating, indicating that, in this transgenic model, increased F3/Contactin levels counteract neuronal precursor commitment. These effects also occur in primary cultures and are reproduced by addition of an F3/Fc fusion protein to wild type cultures. Together, these data indicate a completely novel function for F3/Contactin. Parallel changes in the generation of the Notch Intracellular Domain and in the expression of the Hes-1 transcription factor indicate that activation of the Notch pathway plays a role in this phenotype, consistent with previous in vitro reports that F3/Contactin is a Notch1 ligand.
细胞识别分子 F3/Contactin(CNTN1)的表达通常与有丝后神经元的功能有关。然而,在胚胎皮层中,我们发现它在增殖的脑室区(VZ)前体中表达。与发育中小脑的先前发现相反,F3/Contactin 在早期皮质 VZ 中的转基因过度表达促进增殖并扩大前体细胞池,而牺牲神经发生。然而,在后期,当 F3/Contactin 水平下降时,神经发生恢复,表明 VZ 中的 F3/Contactin 表达与神经发生呈负相关,并在反馈控制机制中发挥作用,调节皮质发育的有序进行。因此,经修饰的 F3/Contactin 图谱导致皮质发生延迟,这可以通过下调上和下皮层标记物的表达和 BrdU 出生时间来判断,表明在该转基因模型中,增加的 F3/Contactin 水平会阻碍神经元前体的承诺。这些影响也发生在原代培养物中,并通过向野生型培养物中添加 F3/Fc 融合蛋白来重现。这些数据共同表明 F3/Contactin 具有全新的功能。Notch 细胞内结构域的产生和 Hes-1 转录因子表达的平行变化表明,Notch 途径的激活在这种表型中发挥作用,与之前的体外报告一致,即 F3/Contactin 是 Notch1 的配体。