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Make room for dedifferentiation.

机译:为去分化留出空间。

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The reversal of cellular differentiation, or dedifferentiation, has fascinated biologists for many decades. While cells can be re-programmed extensively in culture, examples of in vivo dedifferentiation have recently emerged in both vertebrate and invertebrate systems, allowing for analysis of this intriguing process under more physiologically relevant conditions. Studies suggest that dedifferentiation occurs not only during large-scale cellular regeneration, but also at low levels to replenish stem cells lost due to normal turnover. Our recent paper demonstrates a novel method to induce the dedifferentiation of lineage-committed stem cell daughters back into germline stem cells (GSCs) in the Drosophila testis. We also show a requirement for activation of Janus kinase-signal transducer and activator of transcription (Jak-STAT) signaling in this process, and suggest that normally non-motile germline cells gain mobility and out-compete resident somatic cells for occupancy in the stem cell-maintaining microenvironment (niche). Here, we discuss what our findings reveal about stem cell competition and the capacity of various cell types to dedifferentiate.
机译:细胞分化或去分化的逆转使生物学家着迷了数十年。尽管可以在培养中对细胞进行广泛的重新编程,但是最近在脊椎动物和无脊椎动物系统中都出现了体内去分化的例子,从而可以在更生理相关的条件下分析这种有趣的过程。研究表明,去分化不仅发生在大规模细胞再生过程中,而且还以低水平发生,以补充由于正常周转而损失的干细胞。我们最近的论文证明了一种新方法,可诱导果蝇睾丸向谱系干细胞的去分化回到种系干细胞(GSC)。我们还显示了在此过程中激活Janus激酶信号转导子和转录激活子(Jak-STAT)信号的要求,并建议正常的非运动性生殖细胞获得运动性,而竞争性的常驻体细胞在茎中占有维持细胞的微环境(利基)。在这里,我们讨论了我们的发现揭示了干细胞竞争以及各种细胞去分化能力的发现。

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