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The zebrafish flotte lotte mutant reveals that the local retinal environment promotes the differentiation of proliferating precursors emerging from their stem cell niche

机译:斑马鱼flotte乐天突变体揭示,当地的视网膜环境促进其干细胞生态位中出现的增殖前体的分化。

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摘要

It is currently unclear how intrinsic and extrinsic mechanisms cooperate to control the progression from self-renewing to neurogenic divisions in retinal precursor cells. Here, we use the zebrafish flotte lotte (flo) mutant, which carries a mutation in the elys (ahctf1) gene, to study the relationship between cell cycle progression and neuronal differentiation by investigating how proliferating progenitor cells transition towards differentiation in a retinal stem cell niche termed the ciliary marginal zone (CMZ). In zebrafish embryos without Elys, CMZ cells retain the capacity to proliferate but lose the ability to enter their final neurogenic divisions to differentiate as neurons. However, mosaic retinae composed of wild-type and flo cells show that despite inherent cell cycle defects, flo mutant cells progress from proliferation to differentiation when in the vicinity of wild-type retinal neurons. We propose that the differentiated retinal environment limits the proliferation of precursors emerging from the CMZ in a manner that explains the spatial organisation of cells in the CMZ and ensures that proliferative retinal progenitors are driven towards differentiation.
机译:目前尚不清楚内源性机制与外源性机制如何协作以控制视网膜前体细胞中从自我更新到神经源性分裂的进程。在这里,我们使用斑马鱼flotte lotte(flo)突变体,该突变体在elys(ahctf1)基因中携带突变,通过研究增殖祖细胞如何在视网膜干细胞中过渡到分化来研究细胞周期进程与神经元分化之间的关系。利基称为睫状边缘区(CMZ)。在没有Elys的斑马鱼胚胎中,CMZ细胞保留了增殖能力,但失去了进入其最终神经原性分裂区分化为神经元的能力。然而,由野生型和flo细胞组成的镶嵌视网膜显示,尽管存在固有的细胞周期缺陷,但在野生型视网膜神经元附近,flo突变型细胞仍会从增殖发展到分化。我们提出,分化的视网膜环境以解释CMZ中细胞的空间组织并确保增殖性视网膜祖细胞被驱动分化的方式限制了从CMZ出现的前体细胞的增殖。

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