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Genome-wide RNAi Screen Identifies Networks Involved in Intestinal Stem Cell Regulation in Drosophila

机译:全基因组的RNAi屏幕确定果蝇在肠道干细胞调控中涉及的网络。

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The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained by intestinal stem cells (ISCs) in both Drosophila and mammals. To comprehensively identify genes and pathways that regulate ISC fates, we performed a genome-wide transgenic RNAi screen in adult Drosophila intestine and identified 405 genes that regulate ISC maintenance and lineage-specific differentiation. By integrating these genes into publicly available interaction databases, we further developed functional networks that regulate ISC self-renewal, ISC proliferation, ISC maintenance of diploid status, ISC survival, ISC-to-enterocyte (EC) lineage differentiation, and ISC-to-enteroendocrine (EE) lineage differentiation. By comparing regulators among ISCs, female germline stem cells, and neural stem cells, we found that factors related to basic stem cell cellular processes are commonly required in all stem cells, and stem-cell-specific, niche-related signals are required only in the unique stem cell type. Our findings provide valuable insights into stem cell maintenance and lineage-specific differentiation.
机译:肠上皮是成年动物中最快的自我更新组织,在果蝇和哺乳动物中都由肠干细胞(ISC)维持。为了全面鉴定调节ISC命运的基因和途径,我们在成年果蝇肠中进行了全基因组转基因RNAi筛选,并鉴定了405个调节ISC维持和谱系特异性分化的基因。通过将这些基因整合到可公开获得的互动数据库中,我们进一步开发了可调节ISC自我更新,ISC增殖,ISC维持二倍体状态,ISC存活,ISC到肠内(EC)谱系分化以及ISC到肠内分泌(EE)谱系分化。通过比较ISC,雌性种系干细胞和神经干细胞之间的调节因子,我们发现所有干细胞通常都需要与基本干细胞细胞过程相关的因素,而干细胞特异性,利基相关信号仅在独特的干细胞类型。我们的发现为干细胞维持和谱系特异性分化提供了有价值的见解。

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