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Identification and regulation of a stage-specific stem cell niche enriched by Nanog-positive spermatogonial stem cells in the mouse testis

机译:小鼠睾丸中Nanog阳性精原干细胞富集的阶段特异性干细胞生态位的鉴定和调控

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The ability of spermatogonial stem cells to acquire embryonic stem cell (ESC) properties in vitro has recently been of great interest. However, studies focused on the in vivo regulation of testicular stem cells have been hampered because the exact anatomical location of these cells is unknown. Moreover, no specialized stem cell niche substructure has been identified in the mammalian testis thus far. It has also been unclear whether the adult mammalian testis houses pluripotent stem cells or whether pluripotency can be induced only in vitro. Here, we demonstrate, for the first time, the existence of a Nanog-positive spermatogonial stem cell subpopulation located in stage XII of the mouse seminiferous epithelial cycle. The efficiency of the cells from seminiferous tubules with respect to prolonged pluripotent gene expression was correlated directly with stage-specific expression levels of Nanog and Oct4, demonstrating the previously unknown stage-specific regulation of undifferentiated spermatogonia (SPG). Testicular Nanog expression marked a radioresistant spermatogonial subpopulation, supporting its stem cell nature. Furthermore, we demonstrated that p21 acts as an upstream regulator of Nanog in SPG and mouse ESCs, and our results demonstrate that promyelocytic leukemia zinc finger is a specific marker of progenitor SPG. Additionally, we describe a novel method to cultivate Nanog-positive SPG in vitro. This study demonstrates the existence and location of a previously unknown stage-specific spermatogonial stem cell niche and reports the regulation of radioresistant spermatogonial stem cells.
机译:最近,精原干细胞在体外获得胚胎干细胞(ESC)特性的能力引起了人们的极大兴趣。然而,由于这些细胞的确切解剖位置是未知的,因此专注于睾丸干细胞的体内调节的研究受到阻碍。此外,到目前为止,在哺乳动物的睾丸中尚未鉴定出专门的干细胞小生境亚结构。还不清楚成年哺乳动物的睾丸是否容纳多能干细胞或是否只能在体外诱导多能性。在这里,我们首次展示了位于小鼠生精上皮周期第十二阶段的Nanog阳性精原干细胞亚群的存在。相对于延长的多能基因表达而言,来自生精小管的细胞的效率与Nanog和Oct4的阶段特异性表达水平直接相关,这证明了以前未知的未分化精原细胞(SPG)的阶段特异性调节。睾丸Nanog的表达标志着放射抗性精原细胞亚群,支持其干细胞性质。此外,我们证明了p21在SPG和小鼠ESC中充当Nanog的上游调节剂,并且我们的结果证明,早幼粒细胞白血病锌指是SPG祖细胞的特定标记。此外,我们描述了一种新型的体外培养Nanog阳性SPG的方法。这项研究证明了以前未知的阶段特异性精原干细胞小生境的存在和位置,并报道了抗辐射精原干细胞的调控。

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