The identity and behavior of mouse spermatogenic stem cells have been a long-standing focus of interest. In the prevailing "As model," stem cell function is restricted to singly isolated (As) spermatogonia. By examining single-cell dynamics of GFRα1+ stem cells in vivo, we evaluate an alternative hypothesis that, through fragmentation, syncytial spermatogonia also contribute to stem cell function in homeostasis. We use live imaging and pulse labeling to quantitatively determine the fates of individual GFRα1+ cells and find that, during steady-state spermatogenesis, the entire GFRα1+ population comprises a single stem cell pool, in which cells continually interconvert between As and syncytial states. A minimal biophysical model, relying only on the rates of incomplete cell division and syncytial fragmentation, precisely predicts the stochastic fates of GFRα1+ cells during steady state and postinsult regeneration. Thus, our results define an alternative and dynamic model for spermatogenic stem cell function in the mouse testis.
Mouse spermatogenic stem cells continually interconvert between equipotent singly isolated and syncytial states.
小鼠精原干细胞在等能的单细胞分离状态和合胞体状态之间不断相互转化
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作者:Hara Kenshiro, Nakagawa Toshinori, Enomoto Hideki, Suzuki Mikiko, Yamamoto Masayuki, Simons Benjamin D, Yoshida Shosei
| 期刊: | Cell Stem Cell | 影响因子: | 20.400 |
| 时间: | 2014 | 起止号: | 2014 May 1; 14(5):658-72 |
| doi: | 10.1016/j.stem.2014.01.019 | 种属: | Mouse |
| 研究方向: | 发育与干细胞、细胞生物学 | ||
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