UPR CNRS 3294, University Paris-Sud, Orsay, France.
Stem Cells. 2012 Dec;30(12):2784-95. doi: 10.1002/stem.1231.
The retina of fish and amphibian contains genuine neural stem cells located at the most peripheral edge of the ciliary marginal zone (CMZ). However, their cell-of-origin as well as the mechanisms that sustain their maintenance during development are presently unknown. We identified Hes4 (previously named XHairy2), a gene encoding a bHLH-O transcriptional repressor, as a stem cell-specific marker of the Xenopus CMZ that is positively regulated by the canonical Wnt pathway and negatively by Hedgehog signaling. We found that during retinogenesis, Hes4 labels a small territory, located first at the pigmented epithelium (RPE)/neural retina (NR) border and later in the retinal margin, that likely gives rise to adult retinal stem cells. We next addressed whether Hes4 might impart this cell subpopulation with retinal stem cell features: inhibited RPE or NR differentiation programs, continuous proliferation, and slow cell cycle speed. We could indeed show that Hes4 overexpression cell autonomously prevents retinal precursor cells from commitment toward retinal fates and maintains them in a proliferative state. Besides, our data highlight for the first time that Hes4 may also constitute a crucial regulator of cell cycle kinetics. Hes4 gain of function indeed significantly slows down cell division, mainly through the lengthening of G1 phase. As a whole, we propose that Hes4 maintains particular stemness features in a cellular cohort dedicated to constitute the adult retinal stem cell pool, by keeping it in an undifferentiated and slowly proliferative state along embryonic retinogenesis.
鱼类和两栖类的视网膜包含真正的神经干细胞,位于纤毛缘区(CMZ)的最外周边缘。然而,它们的起源细胞以及在发育过程中维持其维持的机制目前尚不清楚。我们鉴定出 Hes4(以前称为 XHairy2),一种编码 bHLH-O 转录抑制因子的基因,作为 Xenopus CMZ 的干细胞特异性标志物,其被经典 Wnt 途径正向调节,而 Hedgehog 信号通路则负向调节。我们发现,在视网膜发生过程中,Hes4 标记一个小区域,首先位于色素上皮(RPE)/神经视网膜(NR)边界,然后位于视网膜边缘,该区域可能产生成年视网膜干细胞。接下来,我们研究了 Hes4 是否可以赋予该细胞亚群以视网膜干细胞的特征:抑制 RPE 或 NR 分化程序、持续增殖和缓慢的细胞周期速度。我们确实可以表明,Hes4 的过表达可以自主阻止视网膜前体细胞向视网膜命运的分化,并使其保持增殖状态。此外,我们的数据首次强调,Hes4 可能也是细胞周期动力学的关键调节剂。Hes4 的功能获得确实显著减缓了细胞分裂,主要是通过延长 G1 期。总的来说,我们提出 Hes4 通过使其保持未分化和缓慢增殖状态,在专门用于构成成年视网膜干细胞池的细胞群中维持特定的干细胞特征,沿胚胎视网膜发生。