Department of Cell and Developmental Biology, University College London, London, United Kingdom.
Department of Biochemistry and Molecular Pharmacology, New York University School of Medicine, New York, New York, United States of America.
PLoS Genet. 2021 Dec 13;17(12):e1009609. doi: 10.1371/journal.pgen.1009609. eCollection 2021 Dec.
How and when potential becomes restricted in differentiating stem cell daughters is poorly understood. While it is thought that signals from the niche are actively required to prevent differentiation, another model proposes that stem cells can reversibly transit between multiple states, some of which are primed, but not committed, to differentiate. In the Drosophila testis, somatic cyst stem cells (CySCs) generate cyst cells, which encapsulate the germline to support its development. We find that CySCs are maintained independently of niche self-renewal signals if activity of the PI3K/Tor pathway is inhibited. Conversely, PI3K/Tor is not sufficient alone to drive differentiation, suggesting that it acts to license cells for differentiation. Indeed, we find that the germline is required for differentiation of CySCs in response to PI3K/Tor elevation, indicating that final commitment to differentiation involves several steps and intercellular communication. We propose that CySC daughter cells are plastic, that their fate depends on the availability of neighbouring germ cells, and that PI3K/Tor acts to induce a primed state for CySC daughters to enable coordinated differentiation with the germline.
尽管人们认为龛位信号是主动需要的,以防止分化,但另一种模型则提出,干细胞可以在多个状态之间可逆地转换,其中一些状态已经准备好但尚未决定分化。在果蝇的睾丸中,体细胞囊干细胞(CySCs)产生囊细胞,囊细胞包裹生殖细胞,以支持其发育。我们发现,如果抑制 PI3K/Tor 途径的活性,CySCs 可以独立于龛位自我更新信号而维持。相反,PI3K/Tor 本身不足以单独驱动分化,这表明它可以许可细胞进行分化。事实上,我们发现,在响应 PI3K/Tor 升高时,生殖细胞对于 CySCs 的分化是必需的,这表明最终决定分化涉及多个步骤和细胞间的通信。我们提出,CySC 子细胞是可塑的,它们的命运取决于邻近生殖细胞的可用性,而 PI3K/Tor 则起到诱导 CySC 子细胞进入预备状态的作用,以使其与生殖细胞协调分化。