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Importance of intrinsic mechanisms in cell fate decisions in the developing rat retina.

机译:内源性机制在发育中的大鼠视网膜中决定细胞命运的重要性。

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Cell diversification in the developing nervous system is thought to involve both cell-intrinsic mechanisms and extracellular signals, but their relative importance in particular cell fate decisions remains uncertain. In the mammalian retina, different cell types develop on a predictable schedule from multipotent retinal neuroepithelial cells (RNECs). A current view is that RNECs pass through a series of competence states, progressively changing their responsiveness to instructive extracellular cues, which also change over time. We show here, however, that embryonic day 16-17 (E16-17) rat RNECs develop similarly in serum-free clonal-density cultures and in serum-containing retinal explants-in the number of times they divide, the cell types they generate, and the order in which they generate these cell types. These surprising results suggest that extracellular signals may be less important than currently believed in determining when RNECs stop dividing and what cell types they generate when they withdrawfrom the cell cycle, at least from E16-17 onward.
机译:发育中的神经系统中的细胞多样化被认为既涉及细胞内在机制,又涉及细胞外信号,但是它们在特定细胞命运决定中的相对重要性仍然不确定。在哺乳动物视网膜中,可预测的时间表是由多能性视网膜神经上皮细胞(RNEC)发育出不同的细胞类型。当前的观点是,RNEC会通过一系列能力状态,从而逐渐改变其对指示性细胞外信号的响应能力,这些信号也会随着时间而变化。但是,我们在这里显示,胚胎第16-17天(E16-17)大鼠RNEC在无血清克隆密度培养物中和含血清的视网膜外植体中的发育相似,它们分裂的次数,它们产生的细胞类型,以及它们生成这些单元格类型的顺序。这些令人惊讶的结果表明,在确定RNEC何时停止分裂以及至少从E16-17以后退出细胞周期时,细胞外信号可能不如目前所认为的重要。

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