JT Biohistory Research Hall, Japan.
Graduate School of Life Science, University of Hyogo, Japan.
Dev Biol. 2022 Feb;482:55-66. doi: 10.1016/j.ydbio.2021.12.006. Epub 2021 Dec 17.
The coincidence of cell cycle exit and differentiation has been described in a wide variety of stem cells and organisms for decades, but the causal relationship is still unclear due to the complicated regulation of the cell cycle. Here, we used the planarian Dugesia japonica since they may possess a simple cell cycle regulation in which Cdh1 is one of the factors responsible for exiting the cell cycle. When cdh1 was functionally inhibited, the planarians could not maintain their tissue homeostasis and could not regenerate their missing body parts. While the knockdown of cdh1 caused pronounced accumulation of the stem cells, the progenitor and differentiated cells were decreased. Further analyses indicated that the stem cells with cdh1 knockdown did not undergo differentiation even though they received ERK signaling activation as an induction signal. These results suggested that stem cells could not acquire differentiation competence without cell cycle exit. Thus, we propose that cell cycle regulation determines the differentiation competence and that cell cycle exit to G0 enables stem cells to undergo differentiation.
几十年来,细胞周期退出和分化的巧合在各种干细胞和生物中都有描述,但由于细胞周期的复杂调控,其因果关系仍不清楚。在这里,我们使用了日本涡虫,因为它们可能具有简单的细胞周期调控,其中 Cdh1 是负责退出细胞周期的因素之一。当 cdh1 被功能性抑制时,涡虫就无法维持组织内稳态,也无法再生缺失的身体部位。虽然 cdh1 的敲低导致干细胞明显积累,但祖细胞和分化细胞减少。进一步的分析表明,cdh1 敲低的干细胞即使接收到 ERK 信号激活作为诱导信号,也不会发生分化。这些结果表明,干细胞在没有细胞周期退出的情况下无法获得分化能力。因此,我们提出细胞周期调控决定了分化能力,细胞周期退出到 G0 使干细胞能够进行分化。