首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >An empty Drosophila stem cell niche reactivates the proliferation of ectopic cells.
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An empty Drosophila stem cell niche reactivates the proliferation of ectopic cells.

机译:空的果蝇干细胞生态位重新激活异位细胞的增殖。

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摘要

Stem cells are thought to reside in regulatory microenvironments ("niches") generated by stable stromal neighbors. To investigate the significance of empty niches vacated by stem cell loss, we studied Drosophila ovarioles, which maintain two to three germ-line stem cells in a niche requiring adhesive stromal cap cells and Decapentaplegic signals. After experimentally emptying the germ-line stem cell niche, cap cell activity persists for several weeks. Initially, somatic inner germarium sheath cells enter the empty niche, respond to Dpp, but fail to divide. Subsequently, follicle cell progenitors, including somatic stem cells enter the niche, respond to Dpp, and proliferate as long as cap cells remain. Proliferation requires the normal hedgehog signal of the somatic stem cells as well as proximity to the niche. Thus, empty niches can persist, signal incoming cells, and support ectopic proliferation. Similar events may underlie some disease states.
机译:干细胞被认为存在于稳定的基质邻居产生的调节性微环境(“小生境”)中。为了研究干细胞丧失腾空的空位的重要性,我们研究了果蝇卵子,该卵子在需要粘附基质帽细胞和Decapentaplegic信号的小生境中维持2至3个生殖系干细胞。在实验性清空种系干细胞生态位后,帽细胞活性持续数周。最初,体细胞内胚芽鞘细胞进入空位,对Dpp作出反应,但未能分裂。随后,包括体干细胞在内的卵泡细胞祖细胞进入生态位,对Dpp作出反应,并在保留帽细胞的情况下增殖。增殖需要体干细胞的正常刺猬信号以及与利基的接近。因此,空位可以持续存在,向进入的细胞发出信号,并支持异位增殖。类似的事件可能是某些疾病状态的基础。

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