Bothun Alisha M, Woods Dori C
Department of Biology, Laboratory for Aging and Infertility Research, Northeastern University, Boston, MA 02115, USA.
Heliyon. 2020 Apr 1;6(4):e03651. doi: 10.1016/j.heliyon.2020.e03651. eCollection 2020 Apr.
Herein we investigated whether inherent differences in mitochondrial activity in mouse pluripotent cells could be used to identify populations with an intrinsic ability to differentiate into primordial germ cells (PGCs). Notably, we determined that stem cells sorted based on differences in mitochondrial membrane activity exhibited altered germline differentiation capacity, with low-mitochondrial membrane potential associated with an increase in PGC-like cells. This specification was not further enhanced by hypoxia. We additionally noted differences between these populations in metabolism, transcriptome, and cell-cycle. These data contribute to a growing body of work demonstrating that pluripotent cells exhibit a large range of mitochondrial activity, which impacts cellular function and differentiation potential. Furthermore, pluripotent cells possess a subpopulation of cells with an improved ability to differentiate into the germ lineage that can be identified based on differences in mitochondrial membrane potential.
在此,我们研究了小鼠多能细胞中线粒体活性的内在差异是否可用于鉴定具有分化为原始生殖细胞(PGC)内在能力的细胞群体。值得注意的是,我们确定基于线粒体膜活性差异分选的干细胞表现出改变的种系分化能力,线粒体膜电位低与类原始生殖细胞数量增加相关。低氧并未进一步增强这种特化。我们还注意到这些细胞群体在代谢、转录组和细胞周期方面存在差异。这些数据为越来越多的研究工作做出了贡献,这些研究表明多能细胞表现出广泛的线粒体活性,这会影响细胞功能和分化潜能。此外,多能细胞拥有一群分化为生殖谱系能力增强的细胞亚群,可根据线粒体膜电位的差异来识别。