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首页> 外文期刊>Developmental cell >An RNAi Screen Reveals Intestinal Regulators of Branching Morphogenesis, Differentiation, and Stem Cell Proliferation in Planarians
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An RNAi Screen Reveals Intestinal Regulators of Branching Morphogenesis, Differentiation, and Stem Cell Proliferation in Planarians

机译:RNAi屏幕揭示了肠道调节器的分支形态发生,分化和干细胞的增殖。

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Planarians grow and regenerate organs by coordinating proliferation and differentiation of pluripotent stem cells with remodeling of postmitotic tissues. Understanding how these processes are orchestrated requires characterizing cell-type-specific gene expression programs and their regulation during regeneration and homeostasis. To this end, we analyzed the expression profile of planarian intestinal phagocytes, cells responsible for digestion and nutrient storage/distribution. Utilizing RNA interference, we identified cytoskeletal regulators required for intestinal branching morphogenesis and a modulator of bioactive sphingolipid metabolism, ceramide synthase, required for the production of functional phagocytes. Additionally, we found that a gut-enriched homeobox transcription factor, nkx-2.2, is required for somatic stem cell proliferation, suggesting a niche-like role for phagocytes. Identification of evolutionarily conserved regulators of intestinal branching, differentiation, and stem cell dynamics demonstrates the utility of the planarian digestive system as a model for elucidating the mechanisms controlling postembryonic organogenesis. Organ regeneration coordinates stem cell proliferation and differentiation with remodeling of postmitotic tissues. Forsthoefel et al. purify planarian intestinal cells, characterize their expression profile, and perform a targeted RNAi screen. Their work on transcription factor Nkx2.2 suggests that intestinal phagocytes play a niche-like role to maintain neighboring pluripotent stem cells.
机译:扁平人通过协调多能干细胞的增殖和分化与有丝分裂后组织的重塑来生长和再生器官。要了解如何协调这些过程,需要表征细胞类型特异性基因表达程序及其在再生和体内平衡过程中的调控。为此,我们分析了涡虫肠吞噬细胞,负责消化和营养物存储/分配的细胞的表达谱。利用RNA干扰,我们确定了肠道分支形态发生所需的细胞骨架调节剂和功能性吞噬细胞生产所需的生物活性鞘脂代谢神经调节剂合酰胺。此外,我们发现,富含肠的同源异型盒转录因子nkx-2.2是体细胞干细胞增殖所必需的,提示吞噬细胞具有类似利基的作用。鉴定肠道分支,分化和干细胞动力学的进化保守调节因子,证明了涡虫消化系统作为阐明控制胚胎后器官发生机制的模型的实用性。器官再生与有丝分裂后组织的重塑协调干细胞的增殖和分化。 Forsthoefel等。纯化涡虫肠细胞,表征其表达谱,并进行靶向RNAi筛选。他们在转录因子Nkx2.2上的研究表明,肠道吞噬细胞在维持邻近多能干细胞方面起着类似利基的作用。

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