Buenaventura Diego F, Ghinia-Tegla Miruna G, Emerson Mark M
Department of Biology, The City College of New York, City University of New York, New York, NY 10031, United States; Biology Ph.D. Program, Graduate Center, City University of New York, New York, NY 10031, United States.
Department of Biology, The City College of New York, City University of New York, New York, NY 10031, United States.
Dev Biol. 2018 Nov 1;443(1):35-49. doi: 10.1016/j.ydbio.2018.06.023. Epub 2018 Aug 24.
During development, multipotent retinal progenitor cells generate a large number of unique cell types. Recent evidence suggests that there are fate-restricted progenitor cell states in addition to multipotent ones. Here we report a transcriptomic analysis of fate- restricted progenitor cells biased to produce cone photoreceptors and horizontal cells, marked by the THRB cis-regulatory element ThrbCRM1. Comparison to a control population enriched in multipotent progenitor cells identified several genes considered to be pan-progenitor, such as VSX2, LHX2, and PAX6, as downregulated in these fate- restricted retinal progenitor cells. This differential regulation occurs in chick and in a different restricted progenitor population in mouse suggesting that this is a conserved feature of progenitor dynamics during retinal development. S-phase labeling also revealed that nuclear positions of restricted progenitor populations occupy distinct spatial niches within the developing chick retina. Using a conserved regulatory element proximal to the VSX2 gene, a potential negative feedback mechanism from specific transcription factors enriched in cone/horizontal cell progenitor cells was identified. This study identifies conserved molecular and cellular changes that occur during the generation of fate restricted retinal progenitor cells from multipotent retinal progenitor cells.
在发育过程中,多能视网膜祖细胞会产生大量独特的细胞类型。最近的证据表明,除了多能祖细胞状态外,还存在命运受限的祖细胞状态。在此,我们报告了对以THRB顺式调控元件ThrbCRM1为标记、倾向于产生视锥光感受器和水平细胞的命运受限祖细胞的转录组分析。与富含多能祖细胞的对照群体相比,我们发现一些被认为是泛祖细胞的基因,如VSX2、LHX2和PAX6,在这些命运受限的视网膜祖细胞中表达下调。这种差异调控在鸡以及小鼠的另一个受限祖细胞群体中都存在,这表明这是视网膜发育过程中祖细胞动态变化的一个保守特征。S期标记还显示,受限祖细胞群体的细胞核位置在发育中的鸡视网膜内占据不同的空间小生境。利用VSX2基因附近的一个保守调控元件,我们发现了一种来自视锥/水平细胞祖细胞中富集的特定转录因子的潜在负反馈机制。这项研究确定了在从多能视网膜祖细胞产生命运受限的视网膜祖细胞过程中发生的保守分子和细胞变化。