Department of Neuroscience, Biomedical Centre, Uppsala University, Husargatan 3, Uppsala, Sweden.
Differentiation. 2013 Jan;85(1-2):11-9. doi: 10.1016/j.diff.2012.12.002. Epub 2013 Jan 11.
FoxN4, a forkhead box transcription factor, is expressed in the chicken eye field and in retinal progenitor cells (RPCs) throughout development. FoxN4 labelling overlapped with that of Pax6 and Sox2, two crucial transcription factors for RPCs. Later, during neurogenesis in the retina, some cells were intensely and transiently labelled for FoxN4. These cells co-labelled for Lim1, a transcription factor expressed in early-born horizontal cells. The result suggests that high levels of FoxN4 combined with expression of Lim1 define a population of RPCs committed to the horizontal cell fate prior to their last apical mitosis. As these prospective horizontal cells develop, their FoxN4 expression is down-regulated. Previous results suggested that FoxN4 is important for the generation of horizontal and amacrine cells but that it is not sufficient for the generation of horizontal cells (Li et al., 2004). We found that over-expression of FoxN4 in embryonic day 3 chicken retina could activate horizontal cell markers Prox1 and Lim1, and that it generated numerous and ectopically located horizontal cells of both main subtypes. However, genes expressed in photoreceptors, amacrine and ganglion cells were also activated, indicating that FoxN4 triggered the expression of several differentiation factors. This effect was not exclusive for the retina but was also seen when FoxN4 was over-expressed in the mesencephalic neural tube. Combining the results from over-expression and wild-type expression data we suggest a model where a low level of FoxN4 is maintained in RPCs and that increased levels during a restricted period trigger neurogenesis and commitment of RPCs to the horizontal cell fate.
叉头框转录因子 FoxN4 在鸡眼的眼域和整个发育过程中的视网膜祖细胞(RPC)中表达。FoxN4 标记与两个关键的 RPC 转录因子 Pax6 和 Sox2 的标记重叠。后来,在视网膜的神经发生过程中,一些细胞强烈且短暂地标记为 FoxN4。这些细胞与 Lim1 共标记,Lim1 是在早期出生的水平细胞中表达的转录因子。结果表明,高水平的 FoxN4 结合表达 Lim1 定义了一个 RPC 群体,在它们最后一次顶端有丝分裂之前就决定了水平细胞命运。随着这些预期的水平细胞的发育,它们的 FoxN4 表达被下调。先前的结果表明 FoxN4 对于水平细胞和无长突细胞的产生很重要,但不足以产生水平细胞(Li 等人,2004)。我们发现,在胚胎第 3 天鸡视网膜中过表达 FoxN4 可以激活水平细胞标记物 Prox1 和 Lim1,并产生大量异位定位的两种主要亚型的水平细胞。然而,也激活了光感受器、无长突细胞和节细胞中表达的基因,表明 FoxN4 触发了几个分化因子的表达。这种效应不仅限于视网膜,当 FoxN4 在中脑神经管中过表达时也会出现这种情况。将过表达和野生型表达数据的结果结合起来,我们提出了一个模型,即 RPC 中维持低水平的 FoxN4,而在受限期间增加水平会触发神经发生和 RPC 向水平细胞命运的决定。