Harding Katherine, White Kristin
Massachusetts General Hospital Cutaneous Biology Research Center, Harvard Medical School, Boston, MA 02129, USA.
J Dev Biol. 2018 Oct 19;6(4):25. doi: 10.3390/jdb6040025.
Stem cells face a diversity of choices throughout their lives. At specific times, they may decide to initiate cell division, terminal differentiation, or apoptosis, or they may enter a quiescent non-proliferative state. Neural stem cells in the central nervous system do all of these, at stereotypical times and anatomical positions during development. Distinct populations of neural stem cells offer a unique system to investigate the regulation of a particular stem cell behavior, while comparisons between populations can lead us to a broader understanding of stem cell identity. is a well-described and genetically tractable model for studying fundamental stem cell behavior and the mechanisms that underlie cell-fate decisions. This review will focus on recent advances in our understanding of the factors that contribute to distinct stem cell-fate decisions within the context of the nervous system.
干细胞在其一生中面临着多种多样的选择。在特定时期,它们可能决定开始细胞分裂、终末分化或凋亡,或者进入静止的非增殖状态。中枢神经系统中的神经干细胞在发育过程中的特定时间和解剖位置会进行所有这些活动。不同群体的神经干细胞提供了一个独特的系统来研究特定干细胞行为的调控,而不同群体之间的比较可以使我们更广泛地理解干细胞特性。果蝇是研究基本干细胞行为以及细胞命运决定机制的一个描述详尽且易于进行基因操作的模型。本综述将聚焦于我们在理解神经系统背景下促成不同干细胞命运决定的因素方面的最新进展。