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Conversion of Quiescent Niche Cells to Somatic Stem Cells Causes Ectopic Niche Formation in the Drosophila Testis

机译:静态的利基细胞向体干细胞的转化导致果蝇睾丸中异位的利基形成。

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Adult stem cells reside in specialized regulatory microenvironments, or niches, where local signals ensure stem cell maintenance. The Drosophila testis contains a well-characterized niche wherein signals from postmitotic hub cells promote maintenance of adjacent germline stem cells and somatic cyst stem cells (CySCs). Hub cells were considered to be terminally differentiated; here, we show that they can give rise to CySCs. Genetic ablation of CySCs triggers hub cells to transiently exit quiescence, delaminate from the hub, and convert into functional CySCs. Ectopic Cyclin D-Cdk4 expression in hub cells is also sufficient to trigger their conversion into CySCs. In both cases, this conversion causes the formation of multiple ectopic niches over time. Therefore, our work provides a model for understanding how oncogenic mutations in quiescent niche cells could promote loss of quiescence, changes in cell fate, and aberrant niche expansion.
机译:成体干细胞位于专门的调节性微环境或壁ni中,局部信号确保干细胞得以维持。果蝇睾丸包含一个特征明确的小生境,其中来自有丝分裂后中枢细胞的信号可促进维持邻近的种系干细胞和体囊性干细胞(CySCs)。集线器细胞被认为是终末分化的。在这里,我们证明了它们可以产生CySC。 CySC的遗传消融会触发集线器细胞暂时退出静止状态,从集线器分层并转换为功能性CySC。中枢细胞中异位细胞周期蛋白D-Cdk4的表达也足以触发其转化为CySCs。在两种情况下,这种转换都会随着时间的流逝形成多个异位壁ni。因此,我们的工作提供了一个模型,用于了解静态小生境细胞中的致癌突变如何促进静止性丧失,细胞命运的变化和异常小生境扩展。

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